Author SHA1 Message Date
Ben Kleinheksel 6bc70b5f29 Clean up example
Add second signal set to the example
2025-06-16 15:39:32 -04:00
Ben Kleinheksel bb4176dec8 Change signal name to DAQ Enable 2025-06-16 13:54:51 -04:00
Ben Kleinheksel 0b135e29a0 Add test to example 2025-06-16 11:04:40 -04:00
Ben Kleinheksel 5bfd7e3300 Add set value to live data
Print new commands and signals
2025-06-16 11:04:38 -04:00
Kyle Schwarz f37b88d616 Communication: Fix ScriptStatus sizes 2025-06-12 11:17:59 -04:00
Yasser YassineandKyle Schwarz 33dea748f7 Device: Add supportsCoreminiScript() 2025-06-06 19:29:42 +00:00
Kyle Schwarz 245073f9d5 1.0.0 2025-06-05 21:10:54 -04:00
Kyle Schwarz c4e858d346 Driver: Prefer Npcap
Prefer Npcap over WinPcap and TCP
2025-06-04 22:14:09 -04:00
Keith NashandKyle Schwarz b3d47f2ae5 Communication: Add LogDataMessage 2025-05-16 19:36:27 +00:00
Kyle Schwarz b94ade1ef6 FIRE3: Add Ethernet Activation Lines 2025-05-15 11:11:26 -04:00
Bryant Jones d9ea5e085e Device: Gigastar2: Update networks 2025-05-09 11:51:26 -04:00
Bryant JonesandKyle Schwarz 5125520e76 Device: Gigastar2: Update networks 2025-05-09 15:30:20 +00:00
Kyle Schwarz 4dcb944d35 Driver: Add Servd 2025-05-08 11:22:42 -04:00
Yasser YassineandKyle Schwarz 7eeb1b6c38 Device: Refactor ComponentVersions
Also:
- Add setGenericData()
- Add ExtendedResponseFilter
2025-04-30 18:49:35 +00:00
Kyle Schwarz b1e875980c Communication: Rename Ethernet to Ethernet 01 2025-04-18 09:39:40 -04:00
Kyle Schwarz 8b680f2b64 All: Update network names
Updates all network names, the new format is <id>_<%02d>.
2025-04-17 20:57:46 +00:00
Kyle Schwarz e88cd244c8 Driver: D3XX: Refactor pipe logic 2025-04-15 17:44:58 -04:00
Jonathan SchwartzandKyle Schwarz 70733b3d96 Epsilon: Add PHY settings 2025-04-09 14:08:55 +00:00
Jonathan SchwartzandKyle Schwarz f743f32e63 Bindings: Python: Add FlexRay
Only RX at this time.
2025-04-08 20:47:51 +00:00
Kyle Schwarz 830fe1af59 Build: Add CMake 4.0.0 support 2025-03-31 15:56:14 -04:00
Jonathan SchwartzandKyle Schwarz 2209e348a3 CI: Add warnings & error on warnings 2025-03-28 17:35:26 +00:00
Jonathan SchwartzandKyle Schwarz 52e98af9fd Device: Add RAD-EpsilonXL 2025-03-25 20:43:18 +00:00
Jonathan SchwartzandKyle Schwarz e1a0ca056a Communication: Ignore empty LIN frames for checksum 2025-03-21 18:04:45 +00:00
Kyle Schwarz 538d6ec0c8 Communication: Remove unused parameter 2025-03-17 23:12:25 -04:00
Kyle Schwarz 1ba3eded09 Device: Gracefully handle old firmware without ComponentVersions 2025-03-14 15:38:34 -04:00
Kyle Schwarz 89047447a6 Bindings: Python: Add DoIP Ethernet Activation 2025-03-10 10:50:25 -04:00
Kyle Schwarz f97fd75b8d Docs: icsneopy: Add TC10 example 2025-03-03 17:06:22 -05:00
Yasser YassineandKyle Schwarz ea5f11268c RADMoon2: Enable communication for MDIO 2025-02-26 02:40:01 +00:00
Yasser YassineandKyle Schwarz 759cb2436d Device: RM2 & RM3: Update settings 2025-02-25 22:45:08 +00:00
Kyle Schwarz 771d82826f CI: Delay GitHub push 2025-02-20 15:31:45 -05:00
Yaroslav StetsykandKyle Schwarz b7330a2cea RADMoon3: Add TC10 2025-02-20 19:24:33 +00:00
Kyle Schwarz fb3778f91b Bindings: Python: Rework disk bindings 2025-02-20 12:04:16 -05:00
Kyle Schwarz a0c8cc62df Bindings: Python: Add coremini functions 2025-02-19 17:38:07 +00:00
Kyle Schwarz 77b3564677 Communication: Add missing short format commands 2025-02-19 00:20:49 -05:00
Kyle Schwarz 051063e684 RADGigastar: Add disk support 2025-02-19 00:18:41 -05:00
Kyle Schwarz 7c1cfde6a0 CI: Remove duplicate DOCKER_HOST 2025-02-19 00:16:36 -05:00
Yasser YassineandKyle Schwarz d4995fa2a9 Device: Fix heartbeat thread join location 2025-02-19 05:15:23 +00:00
Kyle Schwarz fb5c4babce CI: Remove hardware tests 2025-02-19 05:12:51 +00:00
Kurt Wachowski 4ba1a1e1dd Resolve "Add MACsec support" 2025-02-17 20:44:58 +00:00
Kyle Schwarz 6b9a687ff9 Bindings: Python: Use static MSVC runtime library 2025-02-11 16:43:00 -05:00
Kyle Schwarz 02b5dafca9 Bindings: Python: Simplify debug process 2025-02-11 12:43:30 -05:00
David RebbeandKyle Schwarz f04cd16bee Platform: Improve Windows wstring support 2025-02-06 18:43:51 +00:00
264 changed files with 5612 additions and 27684 deletions
+39 -151
View File
@@ -4,7 +4,6 @@ variables:
stages:
- build
- unit_test
- hardware_test
- deploy
#-------------------------------------------------------------------------------
@@ -235,54 +234,6 @@ unit_test linux/ubuntu/2204/amd64/clang:
- linux-build
timeout: 5m
build linux/fedora/37/amd64/gcc:
<<: *build_linux_fedora_gcc
image: fedora:37
unit_test linux/fedora/37/amd64/gcc:
<<: *test_linux_fedora_gcc
image: fedora:37
dependencies:
- build linux/fedora/37/amd64/gcc
needs:
- build linux/fedora/37/amd64/gcc
build linux/fedora/37/amd64/clang:
<<: *build_linux_fedora_clang
image: fedora:37
unit_test linux/fedora/37/amd64/clang:
<<: *test_linux_fedora_clang
image: fedora:37
dependencies:
- build linux/fedora/37/amd64/clang
needs:
- build linux/fedora/37/amd64/clang
build linux/fedora/38/amd64/gcc:
<<: *build_linux_fedora_gcc
image: fedora:38
unit_test linux/fedora/38/amd64/gcc:
<<: *test_linux_fedora_gcc
image: fedora:38
dependencies:
- build linux/fedora/38/amd64/gcc
needs:
- build linux/fedora/38/amd64/gcc
build linux/fedora/38/amd64/clang:
<<: *build_linux_fedora_clang
image: fedora:38
unit_test linux/fedora/38/amd64/clang:
<<: *test_linux_fedora_clang
image: fedora:38
dependencies:
- build linux/fedora/38/amd64/clang
needs:
- build linux/fedora/38/amd64/clang
build linux/fedora/39/amd64/gcc:
<<: *build_linux_fedora_gcc
image: fedora:39
@@ -307,118 +258,53 @@ unit_test linux/fedora/39/amd64/clang:
needs:
- build linux/fedora/39/amd64/clang
.hw_test: &hw_test
stage: hardware_test
tags:
- libicsneo_hil
timeout: 5m
script:
- echo $GUEST_OS_TAG
- echo $DEVICE_PORT
- /opt/libvirt-driver/prepare.sh
- /opt/libvirt-driver/run.sh
after_script:
- /opt/libvirt-driver/cleanup.sh
allow_failure: true
build linux/fedora/40/amd64/gcc:
<<: *build_linux_fedora_gcc
image: fedora:40
.fedora38_needs: &fedora38_needs
unit_test linux/fedora/40/amd64/gcc:
<<: *test_linux_fedora_gcc
image: fedora:40
dependencies:
- build linux/fedora/40/amd64/gcc
needs:
- job: build linux/fedora/38/amd64/clang
artifacts: true
- build linux/fedora/40/amd64/gcc
hardware_test fedora38-red2:
<<: *hw_test
<<: *fedora38_needs
variables:
GUEST_OS_TAG: fedora38
DEVICE_PORT: ETH_A
build linux/fedora/40/amd64/clang:
<<: *build_linux_fedora_clang
image: fedora:40
hardware_test fedora38-vcan42:
<<: *hw_test
<<: *fedora38_needs
variables:
GUEST_OS_TAG: fedora38
DEVICE_PORT: USB_D
hardware_test fedora38-fire3:
<<: *hw_test
<<: *fedora38_needs
variables:
GUEST_OS_TAG: fedora38
DEVICE_PORT: ETH_B
hardware_test fedora38-vcan42-EL:
<<: *hw_test
<<: *fedora38_needs
variables:
GUEST_OS_TAG: fedora38
DEVICE_PORT: USB_C
.ubuntu2204_needs: &ubuntu2204_needs
unit_test linux/fedora/40/amd64/clang:
<<: *test_linux_fedora_clang
image: fedora:40
dependencies:
- build linux/fedora/40/amd64/clang
needs:
- job: build linux/ubuntu/2204/amd64/clang
artifacts: true
- build linux/fedora/40/amd64/clang
hardware_test ubuntu2204-red2:
<<: *hw_test
<<: *ubuntu2204_needs
variables:
GUEST_OS_TAG: ubuntu22.04
DEVICE_PORT: ETH_A
build linux/fedora/41/amd64/gcc:
<<: *build_linux_fedora_gcc
image: fedora:41
hardware_test ubuntu2204-vcan42:
<<: *hw_test
<<: *ubuntu2204_needs
variables:
GUEST_OS_TAG: ubuntu22.04
DEVICE_PORT: USB_D
hardware_test ubuntu2204-fire3:
<<: *hw_test
<<: *ubuntu2204_needs
variables:
GUEST_OS_TAG: ubuntu22.04
DEVICE_PORT: ETH_B
hardware_test ubuntu2204-vcan42-EL:
<<: *hw_test
<<: *ubuntu2204_needs
variables:
GUEST_OS_TAG: ubuntu22.04
DEVICE_PORT: USB_C
.win10_needs: &win10_needs
unit_test linux/fedora/41/amd64/gcc:
<<: *test_linux_fedora_gcc
image: fedora:41
dependencies:
- build linux/fedora/41/amd64/gcc
needs:
- job: build windows/x64
artifacts: true
- build linux/fedora/41/amd64/gcc
hardware_test win10-red2:
<<: *hw_test
<<: *win10_needs
variables:
GUEST_OS_TAG: win10
DEVICE_PORT: ETH_A
build linux/fedora/41/amd64/clang:
<<: *build_linux_fedora_clang
image: fedora:41
hardware_test win10-vcan42:
<<: *hw_test
<<: *win10_needs
variables:
GUEST_OS_TAG: win10
DEVICE_PORT: USB_D
hardware_test win10-fire3:
<<: *hw_test
<<: *win10_needs
variables:
GUEST_OS_TAG: win10
DEVICE_PORT: ETH_B
hardware_test win10-vcan42-EL:
<<: *hw_test
<<: *win10_needs
variables:
GUEST_OS_TAG: win10
DEVICE_PORT: USB_C
unit_test linux/fedora/41/amd64/clang:
<<: *test_linux_fedora_clang
image: fedora:41
dependencies:
- build linux/fedora/41/amd64/clang
needs:
- build linux/fedora/41/amd64/clang
#-------------------------------------------------------------------------------
# Python Module
@@ -522,6 +408,8 @@ push github:
image: alpine:latest
rules:
- if: $CI_COMMIT_BRANCH == $CI_DEFAULT_BRANCH
when: delayed
start_in: 10 minutes
dependencies:
- deploy python/pypi
needs:
+11 -64
View File
@@ -1,5 +1,5 @@
cmake_minimum_required(VERSION 3.12)
project(libicsneo VERSION 0.3.0)
cmake_minimum_required(VERSION 3.16)
project(libicsneo VERSION 1.0.0)
cmake_policy(SET CMP0074 NEW)
if(POLICY CMP0135)
@@ -7,13 +7,10 @@ if(POLICY CMP0135)
endif()
option(LIBICSNEO_BUILD_UNIT_TESTS "Build unit tests." OFF)
option(LIBICSNEO_BUILD_SYSTEM_TESTS "Build system tests." OFF)
option(LIBICSNEO_BUILD_DOCS "Build documentation. Don't use in Visual Studio." OFF)
option(LIBICSNEO_BUILD_EXAMPLES "Build examples." ON)
option(LIBICSNEO_BUILD_ICSNEOC "Build dynamic C library" ON)
option(LIBICSNEO_BUILD_ICSNEOC_STATIC "Build static C library" ON)
option(LIBICSNEO_BUILD_ICSNEOC2 "Build dynamic C2 library" ON)
option(LIBICSNEO_BUILD_ICSNEOC2_STATIC "Build static C2 library" ON)
option(LIBICSNEO_BUILD_ICSNEOLEGACY "Build icsnVC40 compatibility library" ON)
option(LIBICSNEO_BUILD_ICSNEOLEGACY_STATIC "Build static icsnVC40 compatibility library" ON)
set(LIBICSNEO_NPCAP_INCLUDE_DIR "" CACHE STRING "Npcap include directory; set to build with Npcap")
@@ -30,7 +27,6 @@ option(LIBICSNEO_ENABLE_TCP "Enable devices which communicate over TCP" OFF)
option(LIBICSNEO_ENABLE_FTD3XX "Enable devices which communicate over USB FTD3XX" ON)
option(LIBICSNEO_ENABLE_BINDINGS_PYTHON "Enable Python library" OFF)
option(LIBICSNEO_ENABLE_BINDINGS_RUST "Enable Rust library" OFF)
if(NOT CMAKE_CXX_STANDARD)
set(CMAKE_CXX_STANDARD 17)
@@ -113,7 +109,9 @@ if(LIBICSNEO_BUILD_DOCS)
endif()
if(WIN32)
add_definitions(-DWIN32_LEAN_AND_MEAN -DNOMINMAX -D_CRT_SECURE_NO_WARNINGS)
set(PLATFORM_SRC
platform/windows/strings.cpp
platform/windows/registry.cpp
)
@@ -248,9 +246,11 @@ set(SRC_FILES
communication/message/ethphymessage.cpp
communication/message/linmessage.cpp
communication/message/livedatamessage.cpp
communication/message/logdatamessage.cpp
communication/message/tc10statusmessage.cpp
communication/message/gptpstatusmessage.cpp
communication/message/ethernetstatusmessage.cpp
communication/message/macsecmessage.cpp
communication/packet/flexraypacket.cpp
communication/packet/canpacket.cpp
communication/packet/a2bpacket.cpp
@@ -278,6 +278,7 @@ set(SRC_FILES
communication/driver.cpp
communication/livedata.cpp
communication/ringbuffer.cpp
communication/crc32.cpp
device/extensions/flexray/extension.cpp
device/extensions/flexray/controller.cpp
device/idevicesettings.cpp
@@ -307,6 +308,7 @@ set(SRC_FILES
disk/vsa/vsa0f.cpp
disk/vsa/vsa6a.cpp
disk/vsa/vsaparser.cpp
platform/servd.cpp
${PLATFORM_SRC}
)
@@ -337,7 +339,6 @@ endif()
configure_file(api/icsneocpp/buildinfo.h.template ${CMAKE_CURRENT_BINARY_DIR}/generated/buildinfo.h)
configure_file(api/icsneoc/version.rc.template ${CMAKE_CURRENT_BINARY_DIR}/generated/icsneoc/version.rc)
configure_file(api/icsneoc2/version.rc.template ${CMAKE_CURRENT_BINARY_DIR}/generated/icsneoc2/version.rc)
foreach(EXTINC ${LIBICSNEO_EXTENSION_INCLUDES})
message("Including " ${EXTINC})
@@ -368,7 +369,7 @@ target_include_directories(icsneocpp
${CMAKE_CURRENT_SOURCE_DIR}/include
${LIBICSNEO_EXTENSION_INCLUDE_PATHS}
)
target_link_libraries(icsneocpp PUBLIC Threads::Threads)
target_link_libraries(icsneocpp PUBLIC Threads::Threads $<$<BOOL:${WIN32}>:ws2_32 iphlpapi>)
set_property(TARGET icsneocpp PROPERTY POSITION_INDEPENDENT_CODE ON)
target_compile_features(icsneocpp PUBLIC cxx_auto_type cxx_constexpr cxx_lambdas cxx_nullptr cxx_range_for cxx_rvalue_references cxx_sizeof_member cxx_strong_enums)
message("Loaded extensions: " ${LIBICSNEO_EXTENSION_TARGETS})
@@ -426,10 +427,9 @@ if(LIBICSNEO_ENABLE_RAW_ETHERNET)
if(WIN32)
if(LIBICSNEO_NPCAP_INCLUDE_DIR STREQUAL "")
target_include_directories(icsneocpp PUBLIC AFTER third-party/winpcap/include)
add_definitions(-DWPCAP -DHAVE_REMOTE -DWIN32_LEAN_AND_MEAN)
add_definitions(-DWPCAP -DHAVE_REMOTE)
else()
target_include_directories(icsneocpp PUBLIC AFTER ${LIBICSNEO_NPCAP_INCLUDE_DIR})
add_definitions(-DNPCAP -DWIN32_LEAN_AND_MEAN)
endif()
else()
find_package(PCAP REQUIRED)
@@ -465,42 +465,6 @@ if(LIBICSNEO_BUILD_ICSNEOC_STATIC)
target_compile_definitions(icsneoc-static PUBLIC ICSNEOC_BUILD_STATIC)
endif()
if(LIBICSNEO_BUILD_ICSNEOC2)
add_library(icsneoc2 SHARED api/icsneoc2/icsneoc2.cpp ${CMAKE_CURRENT_BINARY_DIR}/generated/icsneoc2/version.rc)
target_include_directories(icsneoc2
PUBLIC
$<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR}/include>
$<INSTALL_INTERFACE:>
PRIVATE
${CMAKE_CURRENT_SOURCE_DIR}/include
)
target_link_libraries(icsneoc2 PRIVATE icsneocpp)
target_compile_definitions(icsneoc2
PRIVATE
ICSNEO_EXPORTS _CRT_SECURE_NO_WARNINGS
PUBLIC
ICSNEO_IMPORTS _CRT_SECURE_NO_WARNINGS
INTERFACE
ICSNEO_IMPORTS _CRT_SECURE_NO_WARNINGS
)
target_compile_features(icsneoc2 PRIVATE cxx_auto_type cxx_constexpr cxx_lambdas cxx_nullptr cxx_range_for cxx_rvalue_references cxx_sizeof_member cxx_strong_enums)
target_compile_definitions(icsneoc2 PUBLIC ICSNEOC2_BUILD_DYNAMIC)
endif()
if(LIBICSNEO_BUILD_ICSNEOC2_STATIC)
add_library(icsneoc2-static STATIC api/icsneoc2/icsneoc2.cpp)
target_include_directories(icsneoc2-static
PUBLIC
$<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR}/include>
$<INSTALL_INTERFACE:>
PRIVATE
${CMAKE_CURRENT_SOURCE_DIR}/include
)
target_link_libraries(icsneoc2-static PUBLIC icsneocpp)
target_compile_features(icsneoc2-static PUBLIC cxx_auto_type cxx_constexpr cxx_lambdas cxx_nullptr cxx_range_for cxx_rvalue_references cxx_sizeof_member cxx_strong_enums)
target_compile_definitions(icsneoc2-static PUBLIC ICSNEOC2_BUILD_STATIC)
endif()
if(LIBICSNEO_BUILD_ICSNEOLEGACY)
add_library(icsneolegacy SHARED
api/icsneolegacy/icsneolegacy.cpp
@@ -567,12 +531,11 @@ if(LIBICSNEO_BUILD_UNIT_TESTS)
test/unit/livedataencoderdecodertest.cpp
test/unit/ringbuffertest.cpp
test/unit/apperrordecodertest.cpp
test/unit/icsneoc2.cpp
test/unit/windowsstrings.cpp
)
target_link_libraries(libicsneo-unit-tests gtest gtest_main)
target_link_libraries(libicsneo-unit-tests icsneocpp)
target_link_libraries(libicsneo-unit-tests icsneoc2-static)
target_include_directories(libicsneo-unit-tests PUBLIC ${gtest_SOURCE_DIR}/include ${gtest_SOURCE_DIR})
@@ -581,22 +544,6 @@ if(LIBICSNEO_BUILD_UNIT_TESTS)
add_test(NAME libicsneo-unit-test-suite COMMAND libicsneo-unit-tests)
endif()
if(LIBICSNEO_BUILD_SYSTEM_TESTS)
if(DEFINED ENV{LIBICSNEO_SYSTEM_TESTS})
include(FetchContent)
file(MAKE_DIRECTORY test/system)
FetchContent_Declare(
SystemTests
GIT_REPOSITORY $ENV{LIBICSNEO_SYSTEM_TESTS}
GIT_TAG main
SOURCE_DIR ${CMAKE_CURRENT_SOURCE_DIR}/test/system
)
FetchContent_MakeAvailable(SystemTests)
else()
message("System test repo not defined!")
endif()
endif()
set(CPACK_PROJECT_NAME ${PROJECT_NAME})
set(CPACK_PROJECT_VERSION ${PROJECT_VERSION})
include(CPack)
+2
View File
@@ -23,6 +23,8 @@ each of the respective APIs.
- RAD-A2B
- RAD-Comet 2
- RAD-Comet 3
- RAD-Epsilon
- RAD-EpsilonXL
- RAD-Galaxy
- RAD-Galaxy 2
- RAD-Gigastar
-54
View File
@@ -1,54 +0,0 @@
#include "icsneo/icsneo.h"
#include "icsneo/icsneocpp.h"
#include "icsneo/device/devicefinder.h"
#include <string>
#include <algorithm>
using namespace icsneo;
struct icsneoOpenOptions_t {
/** Open the device in online mode on open. */
bool goOnlineOnOpen = true;
/** Enable message polling on open. */
bool enablePollingOnOpen = true;
/** Synchronize the device RTC on open.
* Useful for devices that don't have an RTC battery like ValueCAN4 */
bool syncRTCOnOpen = true;
};
typedef struct icsneo_device_t {
// This is the actual device handle, when its not open it will be NULL.
std::shared_ptr<Device> device;
icsneoOpenOptions_t openOptions;
} *icsneo_device_ptr_t;
icsneo_result_t icsneo_find(icsneo_device_ptr_t* devices, uint32_t* devices_count, void* reserved) {
static std::deque<icsneo_device_t> found_icsneo_devices;
if (!devices || !devices_count) {
return icsneo_error_invalid_parameter;
}
// Find all devices and get the minimum size to process
auto found_devices = DeviceFinder::FindAll();
auto min_size = std::minmax(found_devices.size(), static_cast<size_t>(*devices_count)).first;
// lets resize the array to the minimum size
for (auto i = 0; i < min_size; i++) {
const auto* dev = devices[i];
dev = new icsneo_device_t {};
dev->device = found_devices[i];
}
return icsneo_error_success;
}
icsneo_result_t icsneo_open(icsneo_device_ptr_t* device) {
if (!device) {
return icsneo_error_invalid_parameter;
}
return icsneo_error_success;
}
-51
View File
@@ -1,51 +0,0 @@
#define VER_FILEVERSION @PROJECT_VERSION_MAJOR@,@PROJECT_VERSION_MINOR@,@PROJECT_VERSION_PATCH@
#define VER_FILEVERSION_STR "v@PROJECT_VERSION_MAJOR@.@PROJECT_VERSION_MINOR@.@PROJECT_VERSION_PATCH@@BUILD_METADATA_PLUS@ @BUILD_GIT_INFO@"
#define VER_PRODUCTVERSION VER_FILEVERSION
#define VER_PRODUCTVERSION_STR VER_FILEVERSION_STR
#ifndef DEBUG
#define VER_DEBUG 0
#else
#define VER_DEBUG VS_FF_DEBUG
#endif
#include <windows.h>
VS_VERSION_INFO VERSIONINFO
FILEVERSION VER_FILEVERSION
PRODUCTVERSION VER_PRODUCTVERSION
FILEFLAGSMASK (VS_FF_DEBUG)
FILEFLAGS (VER_DEBUG)
FILEOS VOS__WINDOWS32
FILETYPE VFT_DLL
FILESUBTYPE VFT2_UNKNOWN
BEGIN
BLOCK "StringFileInfo"
BEGIN
BLOCK "040904E4"
BEGIN
VALUE "CompanyName", "Intrepid Control Systems, Inc."
VALUE "FileDescription", "Intrepid Control Systems Open Device Communication C API"
VALUE "FileVersion", VER_FILEVERSION_STR
VALUE "InternalName", "icsneo.dll"
VALUE "LegalCopyright", "Intrepid Control Systems, Inc. (C) 2018-2024"
VALUE "OriginalFilename", "icsneo.dll"
VALUE "ProductName", "libicsneo"
VALUE "ProductVersion", VER_PRODUCTVERSION_STR
END
END
BLOCK "VarFileInfo"
BEGIN
/* The following line should only be modified for localized versions. */
/* It consists of any number of WORD,WORD pairs, with each pair */
/* describing a language,codepage combination supported by the file. */
/* */
/* For example, a file might have values "0x409,1252" indicating that it */
/* supports English language (0x409) in the Windows ANSI codepage (1252). */
VALUE "Translation", 0x409, 1252
END
END
+2 -2
View File
@@ -462,7 +462,7 @@ bool icsneo_transmit(const neodevice_t* device, const neomessage_t* message) {
if(!icsneo_isValidNeoDevice(device))
return false;
if(auto frame = std::dynamic_pointer_cast<icsneo::BusMessage>(CreateMessageFromNeoMessage(message)))
if(auto frame = std::dynamic_pointer_cast<icsneo::Frame>(CreateMessageFromNeoMessage(message)))
return device->device->transmit(frame);
return false;
@@ -738,7 +738,7 @@ int icsneo_getDeviceStatus(const neodevice_t* device, void* status, size_t* size
if(!msg) // Did not receive a message
return false;
auto rawMessage = std::static_pointer_cast<InternalMessage>(msg);
auto rawMessage = std::static_pointer_cast<RawMessage>(msg);
if(!rawMessage || (rawMessage->network.getNetID() != Network::NetID::DeviceStatus))
return false;
File diff suppressed because it is too large Load Diff
-51
View File
@@ -1,51 +0,0 @@
#define VER_FILEVERSION @PROJECT_VERSION_MAJOR@,@PROJECT_VERSION_MINOR@,@PROJECT_VERSION_PATCH@
#define VER_FILEVERSION_STR "v@PROJECT_VERSION_MAJOR@.@PROJECT_VERSION_MINOR@.@PROJECT_VERSION_PATCH@@BUILD_METADATA_PLUS@ @BUILD_GIT_INFO@"
#define VER_PRODUCTVERSION VER_FILEVERSION
#define VER_PRODUCTVERSION_STR VER_FILEVERSION_STR
#ifndef DEBUG
#define VER_DEBUG 0
#else
#define VER_DEBUG VS_FF_DEBUG
#endif
#include <windows.h>
VS_VERSION_INFO VERSIONINFO
FILEVERSION VER_FILEVERSION
PRODUCTVERSION VER_PRODUCTVERSION
FILEFLAGSMASK (VS_FF_DEBUG)
FILEFLAGS (VER_DEBUG)
FILEOS VOS__WINDOWS32
FILETYPE VFT_DLL
FILESUBTYPE VFT2_UNKNOWN
BEGIN
BLOCK "StringFileInfo"
BEGIN
BLOCK "040904E4"
BEGIN
VALUE "CompanyName", "Intrepid Control Systems, Inc."
VALUE "FileDescription", "Intrepid Control Systems Open Device Communication C API"
VALUE "FileVersion", VER_FILEVERSION_STR
VALUE "InternalName", "icsneo.dll"
VALUE "LegalCopyright", "Intrepid Control Systems, Inc. (C) 2018-2024"
VALUE "OriginalFilename", "icsneo.dll"
VALUE "ProductName", "libicsneo"
VALUE "ProductVersion", VER_PRODUCTVERSION_STR
END
END
BLOCK "VarFileInfo"
BEGIN
/* The following line should only be modified for localized versions. */
/* It consists of any number of WORD,WORD pairs, with each pair */
/* describing a language,codepage combination supported by the file. */
/* */
/* For example, a file might have values "0x409,1252" indicating that it */
/* supports English language (0x409) in the Windows ANSI codepage (1252). */
VALUE "Translation", 0x409, 1252
END
END
+40
View File
@@ -121,6 +121,7 @@ static constexpr const char* UNEXPECTED_RESPONSE = "Received an unexpected or in
static constexpr const char* LIN_SETTINGS_NOT_AVAILABLE = "LIN settings are not available for this device.";
static constexpr const char* MODE_NOT_FOUND = "The mode was not found.";
static constexpr const char* GPTP_NOT_SUPPORTED = "GPTP clock synchronization is not supported on this device.";
static constexpr const char* SETTING_NOT_AVAILABLE = "Requested a setting that is not available on this device";
// Transport Errors
static constexpr const char* FAILED_TO_READ = "A read operation failed.";
@@ -183,6 +184,19 @@ static constexpr const char* VSA_BYTE_PARSE_FAILURE = "Failure to parse record b
static constexpr const char* VSA_EXTENDED_MESSAGE_ERROR = "Failure to parse extended message record sequence";
static constexpr const char* VSA_OTHER_ERROR = "Unknown error in VSA read API.";
// Servd
static constexpr const char* SERVD_BIND_ERROR = "Error binding socket for Servd communication";
static constexpr const char* SERVD_NONBLOCK_ERROR = "Error setting non-blocking mode for Servd socket";
static constexpr const char* SERVD_TRANSCEIVE_ERROR = "Error while sending to or receiving from Servd";
static constexpr const char* SERVD_OUTDATED_ERROR = "Servd version is lower than client (libicsneo) version, update Servd";
static constexpr const char* SERVD_INVALID_RESPONSE_ERROR = "Unexpected response from Servd";
static constexpr const char* SERVD_LOCK_ERROR = "Error locking Servd mutex";
static constexpr const char* SERVD_SEND_ERROR = "Error sending to Servd";
static constexpr const char* SERVD_RECV_ERROR = "Error receiving from Servd";
static constexpr const char* SERVD_POLL_ERROR = "Error polling on Servd socket";
static constexpr const char* SERVD_NODATA_ERROR = "No data received from Servd";
static constexpr const char* SERVD_JOIN_MULTICAST_ERROR = "Error joining Servd multicast group";
static constexpr const char* TOO_MANY_EVENTS = "Too many events have occurred. The list has been truncated.";
static constexpr const char* UNKNOWN = "An unknown internal error occurred.";
static constexpr const char* INVALID = "An invalid internal error occurred.";
@@ -316,6 +330,8 @@ const char* APIEvent::DescriptionForType(Type type) {
return LIN_SETTINGS_NOT_AVAILABLE;
case Type::ModeNotFound:
return MODE_NOT_FOUND;
case Type::SettingNotAvaiableDevice:
return SETTING_NOT_AVAILABLE;
// Transport Errors
case Type::FailedToRead:
return FAILED_TO_READ;
@@ -434,6 +450,30 @@ const char* APIEvent::DescriptionForType(Type type) {
case Type::VSAOtherError:
return VSA_OTHER_ERROR;
// Servd
case Type::ServdBindError:
return SERVD_BIND_ERROR;
case Type::ServdNonblockError:
return SERVD_NONBLOCK_ERROR;
case Type::ServdTransceiveError:
return SERVD_TRANSCEIVE_ERROR;
case Type::ServdOutdatedError:
return SERVD_OUTDATED_ERROR;
case Type::ServdInvalidResponseError:
return SERVD_INVALID_RESPONSE_ERROR;
case Type::ServdLockError:
return SERVD_LOCK_ERROR;
case Type::ServdSendError:
return SERVD_SEND_ERROR;
case Type::ServdRecvError:
return SERVD_RECV_ERROR;
case Type::ServdPollError:
return SERVD_POLL_ERROR;
case Type::ServdNoDataError:
return SERVD_NODATA_ERROR;
case Type::ServdJoinMulticastError:
return SERVD_JOIN_MULTICAST_ERROR;
// Other Errors
case Type::TooManyEvents:
return TOO_MANY_EVENTS;
+16 -18
View File
@@ -2,8 +2,6 @@
#error "icsneolegacy.cpp must be compiled with a C++ compiler!"
#endif
#define NOMINMAX
#define ICSNEOC_MAKEDLL
#include "icsneo/icsneolegacy.h"
#include "icsneo/J2534.h"
@@ -29,25 +27,25 @@ static std::map<legacymaphandle_t, neodevice_t> neodevices;
static std::map<neodevice_t*, NeoDeviceEx*> openneodevices;
static const std::map<size_t, size_t> mp_netIDToVnetOffSet = {
{NETID_HSCAN, 1},
{NETID_MSCAN, 2},
{NETID_HSCAN2, 18},
{NETID_HSCAN3, 19},
{NETID_HSCAN4, 32},
{NETID_HSCAN5, 33},
{NETID_HSCAN6, 47},
{NETID_HSCAN7, 48},
{NETID_DWCAN_01, 1},
{NETID_DWCAN_08, 2},
{NETID_DWCAN_02, 18},
{NETID_DWCAN_03, 19},
{NETID_DWCAN_04, 32},
{NETID_DWCAN_05, 33},
{NETID_DWCAN_06, 47},
{NETID_DWCAN_07, 48},
};
static const std::map<size_t, size_t> mp_HWnetIDToCMnetID = {
{NETID_HSCAN, 0},
{NETID_MSCAN, 1},
{NETID_HSCAN2, 5},
{NETID_HSCAN3, 8},
{NETID_HSCAN4, 14},
{NETID_HSCAN5, 15},
{NETID_HSCAN6, 32},
{NETID_HSCAN7, 33},
{NETID_DWCAN_01, 0},
{NETID_DWCAN_08, 1},
{NETID_DWCAN_02, 5},
{NETID_DWCAN_03, 8},
{NETID_DWCAN_04, 14},
{NETID_DWCAN_05, 15},
{NETID_DWCAN_06, 32},
{NETID_DWCAN_07, 33},
};
static unsigned long vnet_table[] = {0, PLASMA_SLAVE1_OFFSET, PLASMA_SLAVE2_OFFSET};
-15
View File
@@ -1,18 +1,3 @@
if(LIBICSNEO_ENABLE_BINDINGS_PYTHON)
add_subdirectory(python)
endif()
if(LIBICSNEO_ENABLE_BINDINGS_RUST)
include(FetchContent)
FetchContent_Declare(
Corrosion
GIT_REPOSITORY https://github.com/corrosion-rs/corrosion.git
GIT_TAG v0.5 # Optionally specify a commit hash, version tag or branch here
)
FetchContent_MakeAvailable(Corrosion)
corrosion_import_crate(MANIFEST_PATH ${CMAKE_SOURCE_DIR}/bindings/rust/icsneoc2rs/Cargo.toml)
else()
message(STATUS "Not building rust bindings")
endif()
+24 -4
View File
@@ -1,7 +1,18 @@
cmake_minimum_required(VERSION 3.20)
set(PYBIND11_FINDPYTHON ON)
find_package(pybind11 CONFIG REQUIRED)
if(PYBIND11_ROOT)
find_package(pybind11 CONFIG REQUIRED)
else()
include(FetchContent)
FetchContent_Declare(
pybind11
GIT_REPOSITORY https://github.com/pybind/pybind11.git
GIT_TAG v2.13.6
)
FetchContent_MakeAvailable(pybind11)
endif()
pybind11_add_module(icsneopy
icsneopy/api/event.cpp
@@ -10,6 +21,7 @@ pybind11_add_module(icsneopy
icsneopy/api/version.cpp
icsneopy/device/devicetype.cpp
icsneopy/communication/network.cpp
icsneopy/communication/io.cpp
icsneopy/communication/message/message.cpp
icsneopy/communication/message/canmessage.cpp
icsneopy/communication/message/canerrormessage.cpp
@@ -19,16 +31,24 @@ pybind11_add_module(icsneopy
icsneopy/communication/message/mdiomessage.cpp
icsneopy/communication/message/gptpstatusmessage.cpp
icsneopy/communication/message/ethernetstatusmessage.cpp
icsneopy/communication/message/macsecmessage.cpp
icsneopy/communication/message/scriptstatusmessage.cpp
icsneopy/communication/message/callback/messagecallback.cpp
icsneopy/communication/message/filter/messagefilter.cpp
icsneopy/communication/message/flexray/flexraymessage.cpp
icsneopy/disk/diskdriver.cpp
icsneopy/device/device.cpp
icsneopy/device/idevicesettings.cpp
icsneopy/icsneocpp.cpp
)
target_link_libraries(icsneopy PRIVATE icsneocpp)
install(TARGETS icsneopy LIBRARY DESTINATION icsneopy)
find_program(STUBGEN stubgen REQUIRED)
add_custom_command(TARGET icsneopy POST_BUILD COMMAND ${STUBGEN} -m icsneopy -o .)
find_program(STUBGEN_EXE stubgen)
if(STUBGEN_EXE)
add_custom_command(TARGET icsneopy POST_BUILD COMMAND stubgen -v -p icsneopy -o .)
install(FILES ${CMAKE_CURRENT_BINARY_DIR}/icsneopy.pyi py.typed DESTINATION icsneopy)
endif()
install(FILES ${CMAKE_CURRENT_BINARY_DIR}/icsneopy.pyi __init__.py py.typed DESTINATION icsneopy)
install(FILES __init__.py DESTINATION icsneopy)
@@ -0,0 +1,19 @@
#include <pybind11/pybind11.h>
#include <pybind11/stl.h>
#include <pybind11/functional.h>
#include "icsneo/communication/io.h"
namespace icsneo {
void init_io(pybind11::module_& m) {
pybind11::enum_<IO>(m, "IO")
.value("EthernetActivation", IO::EthernetActivation)
.value("USBHostPower", IO::USBHostPower)
.value("BackupPowerEnabled", IO::BackupPowerEnabled)
.value("BackupPowerGood", IO::BackupPowerGood)
.value("Misc", IO::Misc)
.value("EMisc", IO::EMisc);
}
} // namespace icsneo
@@ -7,7 +7,7 @@
namespace icsneo {
void init_canmessage(pybind11::module_& m) {
pybind11::class_<CANMessage, std::shared_ptr<CANMessage>, BusMessage>(m, "CANMessage")
pybind11::class_<CANMessage, std::shared_ptr<CANMessage>, Frame>(m, "CANMessage")
.def(pybind11::init())
.def_readwrite("arbid", &CANMessage::arbid)
.def_readwrite("dlcOnWire", &CANMessage::dlcOnWire)
@@ -11,7 +11,7 @@ void init_ethernetmessage(pybind11::module_& m) {
.def("to_string", &MACAddress::toString)
.def("__repr__", &MACAddress::toString);
pybind11::class_<EthernetMessage, std::shared_ptr<EthernetMessage>, BusMessage>(m, "EthernetMessage")
pybind11::class_<EthernetMessage, std::shared_ptr<EthernetMessage>, Frame>(m, "EthernetMessage")
.def(pybind11::init())
.def_readwrite("preemptionEnabled", &EthernetMessage::preemptionEnabled)
.def_readwrite("preemptionFlags", &EthernetMessage::preemptionFlags)
@@ -0,0 +1,57 @@
#include <pybind11/pybind11.h>
#include <pybind11/stl.h>
#include <pybind11/functional.h>
#include "icsneo/communication/message/flexray/flexraymessage.h"
#include "icsneo/device/extensions/flexray/symbol.h"
#include "icsneo/device/extensions/flexray/channel.h"
#include "icsneo/device/extensions/flexray/crcstatus.h"
namespace icsneo {
struct FlexRayNamespace {
using Symbol = icsneo::FlexRay::Symbol;
using CRCStatus = icsneo::FlexRay::CRCStatus;
using Channel = icsneo::FlexRay::Channel;
};
void init_flexraymessage(pybind11::module_& m) {
// dummy class to hold the enums
pybind11::class_<FlexRayNamespace> flexray(m, "FlexRay");
// enumerations
pybind11::enum_<FlexRayNamespace::Symbol>(flexray, "Symbol")
.value("None", FlexRayNamespace::Symbol::None)
.value("Unknown", FlexRayNamespace::Symbol::Unknown)
.value("Wakeup", FlexRayNamespace::Symbol::Wakeup)
.value("CAS", FlexRayNamespace::Symbol::CAS);
pybind11::enum_<FlexRayNamespace::CRCStatus>(flexray, "CRCStatus")
.value("OK", FlexRayNamespace::CRCStatus::OK)
.value("Error", FlexRayNamespace::CRCStatus::Error)
.value("NoCRC", FlexRayNamespace::CRCStatus::NoCRC);
pybind11::enum_<FlexRayNamespace::Channel>(flexray, "Channel")
.value("None", FlexRayNamespace::Channel::None)
.value("A", FlexRayNamespace::Channel::A)
.value("B", FlexRayNamespace::Channel::B)
.value("AB", FlexRayNamespace::Channel::AB);
// read-only until transmit is supported
pybind11::class_<FlexRayMessage, std::shared_ptr<FlexRayMessage>, Frame>(m, "FlexRayMessage")
.def(pybind11::init())
.def_readonly("slotid", &FlexRayMessage::slotid)
.def_readonly("tsslen", &FlexRayMessage::tsslen)
.def_readonly("framelen", &FlexRayMessage::framelen)
.def_readonly("symbol", &FlexRayMessage::symbol)
.def_readonly("header_crc_status", &FlexRayMessage::headerCRCStatus)
.def_readonly("header_crc", &FlexRayMessage::headerCRC)
.def_readonly("frame_crc_status", &FlexRayMessage::crcStatus)
.def_readonly("frame_crc", &FlexRayMessage::frameCRC)
.def_readonly("channel", &FlexRayMessage::channel)
.def_readonly("null_frame", &FlexRayMessage::nullFrame)
.def_readonly("payload_preamble", &FlexRayMessage::payloadPreamble)
.def_readonly("sync_frame", &FlexRayMessage::sync)
.def_readonly("startup_frame", &FlexRayMessage::startup)
.def_readonly("dynamic_frame", &FlexRayMessage::dynamic)
.def_readonly("cycle", &FlexRayMessage::cycle);
}
} // namespace icsneo
@@ -30,7 +30,7 @@ void init_linmessage(pybind11::module_& m) {
.def_readwrite("BusRecovered", &LINStatusFlags::BusRecovered)
.def_readwrite("BreakOnly", &LINStatusFlags::BreakOnly);
pybind11::class_<LINMessage, std::shared_ptr<LINMessage>, BusMessage> linMessage(m, "LINMessage");
pybind11::class_<LINMessage, std::shared_ptr<LINMessage>, Frame> linMessage(m, "LINMessage");
pybind11::enum_<LINMessage::Type>(linMessage, "Type")
.value("NOT_SET", LINMessage::Type::NOT_SET)
@@ -0,0 +1,160 @@
#include <pybind11/pybind11.h>
#include <pybind11/stl.h>
#include <pybind11/functional.h>
#include "icsneo/communication/message/macsecmessage.h"
namespace icsneo {
void init_macsecmessage(pybind11::module_ & m)
{
pybind11::enum_<MACsecPacketType>(m, "MACsecPacketType")
.value("NoVLAN_OrMPLS", MACsecPacketType::NoVLANOrMPLS)
.value("SingleVLAN", MACsecPacketType::SingleVLAN)
.value("DualVLAN", MACsecPacketType::DualVLAN)
.value("MPLS", MACsecPacketType::MPLS)
.value("SingleVLAN_FollowByMPLS", MACsecPacketType::SingleVLANFollowedByMPLS)
.value("DualVLAN_FollowByMPLS", MACsecPacketType::DualVLANFollowedByMPLS)
.value("Unsupported", MACsecPacketType::Unsupported);
pybind11::enum_<MACsecValidateFrameType>(m, "MACsecValidateFrameType")
.value("Disabled", MACsecValidateFrameType::Disabled)
.value("Check", MACsecValidateFrameType::Check)
.value("Strict", MACsecValidateFrameType::Strict)
.value("NA", MACsecValidateFrameType::NA);
pybind11::enum_<MACsecSecTagIcvStripType>(m, "MACsecSecTagIcvStripType")
.value("StripBoth", MACsecSecTagIcvStripType::StripBoth)
.value("StripSecTagPreserveICV", MACsecSecTagIcvStripType::StripSecTagPreserveICV)
.value("PreserveSecTagStripICV", MACsecSecTagIcvStripType::PreserveSecTagStripICV)
.value("PreserveBoth", MACsecSecTagIcvStripType::PreserveBoth);
pybind11::enum_<MACsecCipherSuiteType>(m, "MACsecCipherSuiteType")
.value("AES_128", MACsecCipherSuiteType::GcmAes128)
.value("AES_256", MACsecCipherSuiteType::GcmAes256)
.value("AES_128_XPN", MACsecCipherSuiteType::GcmAes128Xpn)
.value("AES_256_XPN", MACsecCipherSuiteType::GcmAes256Xpn);
pybind11::class_<MACsecVLANTag, std::shared_ptr<MACsecVLANTag>>(m, "MACsecVLANTag")
.def(pybind11::init())
.def_readwrite("vid", &MACsecVLANTag::vid)
.def_readwrite("pri_cfi", &MACsecVLANTag::priCfi);
pybind11::class_<MACsecMPLSOuter, std::shared_ptr<MACsecMPLSOuter>>(m, "MACsecMPLSOuter")
.def(pybind11::init())
.def_readwrite("mpls_label", &MACsecMPLSOuter::mplsLabel)
.def_readwrite("exp", &MACsecMPLSOuter::exp);
pybind11::class_<MACsecRule, std::shared_ptr<MACsecRule>>(m, "MACsecRule")
.def(pybind11::init())
.def_readwrite("index", &MACsecRule::index)
.def_readwrite("keyMacDa", &MACsecRule::keyMacDa)
.def_readwrite("maskMacDa", &MACsecRule::maskMacDa)
.def_readwrite("keyMacSa", &MACsecRule::keyMacSa)
.def_readwrite("maskMacSa", &MACsecRule::maskMacSa)
.def_readwrite("keyEthertype", &MACsecRule::keyEthertype)
.def_readwrite("maskEthertype", &MACsecRule::maskEthertype)
.def_readwrite("keyVlanTagOuter1", &MACsecRule::keyVlanTagOuter1)
.def_readwrite("keyMplsOuter1", &MACsecRule::keyMplsOuter1)
.def_readwrite("maskVlanTagOuter1", &MACsecRule::maskVlanTagOuter1)
.def_readwrite("maskMplsOuter1", &MACsecRule::maskMplsOuter1)
.def_readwrite("keyVlanTagOuter2", &MACsecRule::keyVlanTagOuter2)
.def_readwrite("keyMplsOuter2", &MACsecRule::keyMplsOuter2)
.def_readwrite("maskVlanTagOuter2", &MACsecRule::maskVlanTagOuter2)
.def_readwrite("maskMplsOuter2", &MACsecRule::maskMplsOuter2)
.def_readwrite("keyBonusData", &MACsecRule::keyBonusData)
.def_readwrite("maskBonusData", &MACsecRule::maskBonusData)
.def_readwrite("keyTagMatchBitmap", &MACsecRule::keyTagMatchBitmap)
.def_readwrite("maskTagMatchBitmap", &MACsecRule::maskTagMatchBitmap)
.def_readwrite("keyPacketType", &MACsecRule::keyPacketType)
.def_readwrite("maskPacketType", &MACsecRule::maskPacketType)
.def_readwrite("keyInnerVlanType", &MACsecRule::keyInnerVlanType)
.def_readwrite("maskInnerVlanType", &MACsecRule::maskInnerVlanType)
.def_readwrite("keyOuterVlanType", &MACsecRule::keyOuterVlanType)
.def_readwrite("maskOuterVlanType", &MACsecRule::maskOuterVlanType)
.def_readwrite("keyNumTags", &MACsecRule::keyNumTags)
.def_readwrite("maskNumTags", &MACsecRule::maskNumTags)
.def_readwrite("keyExpress", &MACsecRule::keyExpress)
.def_readwrite("maskExpress", &MACsecRule::maskExpress)
.def_readwrite("isMpls", &MACsecRule::isMpls)
.def_readwrite("enable", &MACsecRule::enable);
pybind11::class_<MACsecMap, std::shared_ptr<MACsecMap>>(m, "MACsecMap")
.def(pybind11::init())
.def_readwrite("index", &MACsecMap::index)
.def_readwrite("secTagSci", &MACsecMap::secTagSci)
.def_readwrite("secYIndex", &MACsecMap::secYIndex)
.def_readwrite("isControlPacket", &MACsecMap::isControlPacket)
.def_readwrite("scIndex", &MACsecMap::scIndex)
.def_readwrite("auxiliaryPlcy", &MACsecMap::auxiliaryPlcy)
.def_readwrite("ruleId", &MACsecMap::ruleId)
.def_readwrite("enable", &MACsecMap::enable);
pybind11::class_<MACsecSecY, std::shared_ptr<MACsecSecY>>(m, "MACsecSecY")
.def(pybind11::init())
.def_readwrite("index", &MACsecSecY::index)
.def_readwrite("controlledPortEnabled", &MACsecSecY::controlledPortEnabled)
.def_readwrite("frameValidationType", &MACsecSecY::frameValidationType)
.def_readwrite("secTagIcvStripType", &MACsecSecY::secTagIcvStripType)
.def_readwrite("cipher", &MACsecSecY::cipher)
.def_readwrite("confidentialOffset", &MACsecSecY::confidentialOffset)
.def_readwrite("icvIncludesDaSa", &MACsecSecY::icvIncludesDaSa)
.def_readwrite("replayProtect", &MACsecSecY::replayProtect)
.def_readwrite("replayWindow", &MACsecSecY::replayWindow)
.def_readwrite("protectFrames", &MACsecSecY::protectFrames)
.def_readwrite("secTagOffset", &MACsecSecY::secTagOffset)
.def_readwrite("secTagTci", &MACsecSecY::secTagTci)
.def_readwrite("mtu", &MACsecSecY::mtu)
.def_readwrite("enable", &MACsecSecY::enable);
pybind11::class_<MACsecSc, std::shared_ptr<MACsecSc>>(m, "MACsecSc")
.def(pybind11::init())
.def_readwrite("index", &MACsecSc::index)
.def_readwrite("secYIndex", &MACsecSc::secYIndex)
.def_readwrite("sci", &MACsecSc::sci)
.def_readwrite("saIndex0", &MACsecSc::saIndex0)
.def_readwrite("saIndex1", &MACsecSc::saIndex1)
.def_readwrite("saIndex0InUse", &MACsecSc::saIndex0InUse)
.def_readwrite("saIndex1InUse", &MACsecSc::saIndex1InUse)
.def_readwrite("enableAutoRekey", &MACsecSc::enableAutoRekey)
.def_readwrite("isActiveSa1", &MACsecSc::isActiveSa1)
.def_readwrite("enable", &MACsecSc::enable);
pybind11::class_<MACsecSa, std::shared_ptr<MACsecSa>>(m, "MACsecSa")
.def(pybind11::init())
.def_readwrite("index", &MACsecSa::index)
.def_readwrite("sak", &MACsecSa::sak)
.def_readwrite("hashKey", &MACsecSa::hashKey)
.def_readwrite("salt", &MACsecSa::salt)
.def_readwrite("ssci", &MACsecSa::ssci)
.def_readwrite("an", &MACsecSa::an)
.def_readwrite("nextPn", &MACsecSa::nextPn)
.def_readwrite("enable", &MACsecSa::enable);
pybind11::class_<MACSecFlags, std::shared_ptr<MACSecFlags>>(m, "MACSecFlags")
.def(pybind11::init())
.def_readwrite("en", &MACSecFlags::en);
pybind11::class_<MACsecConfig, std::shared_ptr<MACsecConfig>>(m, "MACsecConfig")
.def(pybind11::init())
.def_readwrite("flags", &MACsecConfig::flags)
.def_readwrite("rule", &MACsecConfig::rule)
.def_readwrite("map", &MACsecConfig::map)
.def_readwrite("secy", &MACsecConfig::secy)
.def_readwrite("sc", &MACsecConfig::sc)
.def_readwrite("sa", &MACsecConfig::sa);
pybind11::class_<MACSecGlobalFlags, std::shared_ptr<MACSecGlobalFlags>>(m, "MACSecGlobalFlags")
.def(pybind11::init())
.def_readwrite("en", &MACSecGlobalFlags::en)
.def_readwrite("nvm", &MACSecGlobalFlags::nvm);
pybind11::class_<MACsecMessage, std::shared_ptr<MACsecMessage>>(m, "MACsecMessage")
.def(pybind11::init())
.def_readwrite("flags", &MACsecMessage::flags)
.def_readwrite("rx", &MACsecMessage::rx)
.def_readwrite("tx", &MACsecMessage::tx);
}
} // namespace icsneo
@@ -7,7 +7,7 @@
namespace icsneo {
void init_mdiomessage(pybind11::module_& m) {
pybind11::class_<MDIOMessage, std::shared_ptr<MDIOMessage>, BusMessage> mdioMessage(m, "MDIOMessage");
pybind11::class_<MDIOMessage, std::shared_ptr<MDIOMessage>, Frame> mdioMessage(m, "MDIOMessage");
pybind11::enum_<MDIOMessage::Clause>(mdioMessage, "Clause")
.value("Clause45", MDIOMessage::Clause::Clause45)
.value("Clause22", MDIOMessage::Clause::Clause22);
@@ -9,13 +9,13 @@ namespace icsneo {
void init_message(pybind11::module_& m) {
pybind11::class_<Message, std::shared_ptr<Message>> message(m, "Message");
pybind11::enum_<Message::Type>(message, "Type")
.value("BusMessage", Message::Type::BusMessage)
.value("Frame", Message::Type::Frame)
.value("CANErrorCount", Message::Type::CANErrorCount)
.value("CANError", Message::Type::CANError)
.value("LINHeaderOnly", Message::Type::LINHeaderOnly)
.value("LINBreak", Message::Type::LINBreak)
.value("Invalid", Message::Type::Invalid)
.value("InternalMessage", Message::Type::InternalMessage)
.value("RawMessage", Message::Type::RawMessage)
.value("ReadSettings", Message::Type::ReadSettings)
.value("ResetStatus", Message::Type::ResetStatus)
.value("DeviceVersion", Message::Type::DeviceVersion)
@@ -40,14 +40,14 @@ void init_message(pybind11::module_& m) {
message.def_readonly("type", &Message::type);
message.def_readwrite("timestamp", &Message::timestamp);
pybind11::class_<InternalMessage, std::shared_ptr<InternalMessage>, Message>(m, "InternalMessage")
.def_readwrite("network", &InternalMessage::network)
.def_readwrite("data", &InternalMessage::data);
pybind11::class_<RawMessage, std::shared_ptr<RawMessage>, Message>(m, "RawMessage")
.def_readwrite("network", &RawMessage::network)
.def_readwrite("data", &RawMessage::data);
pybind11::class_<BusMessage, std::shared_ptr<BusMessage>, InternalMessage>(m, "BusMessage")
.def_readwrite("description", &BusMessage::description)
.def_readwrite("transmitted", &BusMessage::transmitted)
.def_readwrite("error", &BusMessage::error);
pybind11::class_<Frame, std::shared_ptr<Frame>, RawMessage>(m, "Frame")
.def_readwrite("description", &Frame::description)
.def_readwrite("transmitted", &Frame::transmitted)
.def_readwrite("error", &Frame::error);
}
} // namespace icsneo
@@ -0,0 +1,30 @@
#include <pybind11/pybind11.h>
#include <pybind11/stl.h>
#include <pybind11/functional.h>
#include "icsneo/communication/message/scriptstatusmessage.h"
namespace icsneo {
void init_scriptstatusmessage(pybind11::module_& m) {
pybind11::class_<ScriptStatusMessage, std::shared_ptr<ScriptStatusMessage>, Message>(m, "ScriptStatusMessage")
.def_readonly("isEncrypted", &ScriptStatusMessage::isEncrypted)
.def_readonly("isCoreminiRunning", &ScriptStatusMessage::isCoreminiRunning)
.def_readonly("sectorOverflows", &ScriptStatusMessage::sectorOverflows)
.def_readonly("numRemainingSectorBuffers", &ScriptStatusMessage::numRemainingSectorBuffers)
.def_readonly("lastSector", &ScriptStatusMessage::lastSector)
.def_readonly("readBinSize", &ScriptStatusMessage::readBinSize)
.def_readonly("minSector", &ScriptStatusMessage::minSector)
.def_readonly("maxSector", &ScriptStatusMessage::maxSector)
.def_readonly("currentSector", &ScriptStatusMessage::currentSector)
.def_readonly("coreminiCreateTime", &ScriptStatusMessage::coreminiCreateTime)
.def_readonly("fileChecksum", &ScriptStatusMessage::fileChecksum)
.def_readonly("coreminiVersion", &ScriptStatusMessage::coreminiVersion)
.def_readonly("coreminiHeaderSize", &ScriptStatusMessage::coreminiHeaderSize)
.def_readonly("diagnosticErrorCode", &ScriptStatusMessage::diagnosticErrorCode)
.def_readonly("diagnosticErrorCodeCount", &ScriptStatusMessage::diagnosticErrorCodeCount)
.def_readonly("maxCoreminiSizeKB", &ScriptStatusMessage::maxCoreminiSizeKB);
}
} // namespace icsneo
@@ -11,25 +11,25 @@ void init_network(pybind11::module_& m) {
pybind11::enum_<Network::NetID>(network, "NetID")
.value("Device", Network::NetID::Device)
.value("HSCAN", Network::NetID::HSCAN)
.value("MSCAN", Network::NetID::MSCAN)
.value("SWCAN", Network::NetID::SWCAN)
.value("LSFTCAN", Network::NetID::LSFTCAN)
.value("DWCAN_01", Network::NetID::DWCAN_01)
.value("DWCAN_08", Network::NetID::DWCAN_08)
.value("SWCAN_01", Network::NetID::SWCAN_01)
.value("LSFTCAN_01", Network::NetID::LSFTCAN_01)
.value("FordSCP", Network::NetID::FordSCP)
.value("J1708", Network::NetID::J1708)
.value("Aux", Network::NetID::Aux)
.value("J1850VPW", Network::NetID::J1850VPW)
.value("ISO9141", Network::NetID::ISO9141)
.value("ISO9141_01", Network::NetID::ISO9141_01)
.value("DiskData", Network::NetID::DiskData)
.value("Main51", Network::NetID::Main51)
.value("RED", Network::NetID::RED)
.value("SCI", Network::NetID::SCI)
.value("ISO9141_2", Network::NetID::ISO9141_2)
.value("ISO9141_02", Network::NetID::ISO9141_02)
.value("ISO14230", Network::NetID::ISO14230)
.value("LIN", Network::NetID::LIN)
.value("OP_Ethernet1", Network::NetID::OP_Ethernet1)
.value("OP_Ethernet2", Network::NetID::OP_Ethernet2)
.value("OP_Ethernet3", Network::NetID::OP_Ethernet3)
.value("LIN_01", Network::NetID::LIN_01)
.value("AE_01", Network::NetID::AE_01)
.value("AE_02", Network::NetID::AE_02)
.value("AE_03", Network::NetID::AE_03)
.value("RED_EXT_MEMORYREAD", Network::NetID::RED_EXT_MEMORYREAD)
.value("RED_INT_MEMORYREAD", Network::NetID::RED_INT_MEMORYREAD)
.value("RED_DFLASH_READ", Network::NetID::RED_DFLASH_READ)
@@ -51,15 +51,15 @@ void init_network(pybind11::module_& m) {
.value("RED_SCOPE_CAPTURE", Network::NetID::RED_SCOPE_CAPTURE)
.value("RED_HARDWARE_EXCEP", Network::NetID::RED_HARDWARE_EXCEP)
.value("RED_GET_RTC", Network::NetID::RED_GET_RTC)
.value("ISO9141_3", Network::NetID::ISO9141_3)
.value("HSCAN2", Network::NetID::HSCAN2)
.value("HSCAN3", Network::NetID::HSCAN3)
.value("OP_Ethernet4", Network::NetID::OP_Ethernet4)
.value("OP_Ethernet5", Network::NetID::OP_Ethernet5)
.value("ISO9141_4", Network::NetID::ISO9141_4)
.value("LIN2", Network::NetID::LIN2)
.value("LIN3", Network::NetID::LIN3)
.value("LIN4", Network::NetID::LIN4)
.value("ISO9141_03", Network::NetID::ISO9141_03)
.value("DWCAN_02", Network::NetID::DWCAN_02)
.value("DWCAN_03", Network::NetID::DWCAN_03)
.value("AE_04", Network::NetID::AE_04)
.value("AE_05", Network::NetID::AE_05)
.value("ISO9141_04", Network::NetID::ISO9141_04)
.value("LIN_02", Network::NetID::LIN_02)
.value("LIN_03", Network::NetID::LIN_03)
.value("LIN_04", Network::NetID::LIN_04)
.value("RED_App_Error", Network::NetID::RED_App_Error)
.value("CGI", Network::NetID::CGI)
.value("Reset_Status", Network::NetID::Reset_Status)
@@ -69,44 +69,44 @@ void init_network(pybind11::module_& m) {
.value("Read_Datalink_Cm_Rx_Msg", Network::NetID::Read_Datalink_Cm_Rx_Msg)
.value("Logging_Overflow", Network::NetID::Logging_Overflow)
.value("ReadSettings", Network::NetID::ReadSettings)
.value("HSCAN4", Network::NetID::HSCAN4)
.value("HSCAN5", Network::NetID::HSCAN5)
.value("DWCAN_04", Network::NetID::DWCAN_04)
.value("DWCAN_05", Network::NetID::DWCAN_05)
.value("RS232", Network::NetID::RS232)
.value("UART", Network::NetID::UART)
.value("UART2", Network::NetID::UART2)
.value("UART3", Network::NetID::UART3)
.value("UART4", Network::NetID::UART4)
.value("SWCAN2", Network::NetID::SWCAN2)
.value("Ethernet_DAQ", Network::NetID::Ethernet_DAQ)
.value("UART_01", Network::NetID::UART_01)
.value("UART_02", Network::NetID::UART_02)
.value("UART_03", Network::NetID::UART_03)
.value("UART_04", Network::NetID::UART_04)
.value("SWCAN_02", Network::NetID::SWCAN_02)
.value("ETHERNET_DAQ", Network::NetID::ETHERNET_DAQ)
.value("Data_To_Host", Network::NetID::Data_To_Host)
.value("TextAPI_To_Host", Network::NetID::TextAPI_To_Host)
.value("SPI1", Network::NetID::SPI1)
.value("OP_Ethernet6", Network::NetID::OP_Ethernet6)
.value("SPI_01", Network::NetID::SPI_01)
.value("AE_06", Network::NetID::AE_06)
.value("Red_VBat", Network::NetID::Red_VBat)
.value("OP_Ethernet7", Network::NetID::OP_Ethernet7)
.value("OP_Ethernet8", Network::NetID::OP_Ethernet8)
.value("OP_Ethernet9", Network::NetID::OP_Ethernet9)
.value("OP_Ethernet10", Network::NetID::OP_Ethernet10)
.value("OP_Ethernet11", Network::NetID::OP_Ethernet11)
.value("FlexRay1a", Network::NetID::FlexRay1a)
.value("FlexRay1b", Network::NetID::FlexRay1b)
.value("FlexRay2a", Network::NetID::FlexRay2a)
.value("FlexRay2b", Network::NetID::FlexRay2b)
.value("LIN5", Network::NetID::LIN5)
.value("FlexRay", Network::NetID::FlexRay)
.value("FlexRay2", Network::NetID::FlexRay2)
.value("OP_Ethernet12", Network::NetID::OP_Ethernet12)
.value("I2C", Network::NetID::I2C)
.value("MOST25", Network::NetID::MOST25)
.value("MOST50", Network::NetID::MOST50)
.value("MOST150", Network::NetID::MOST150)
.value("Ethernet", Network::NetID::Ethernet)
.value("AE_07", Network::NetID::AE_07)
.value("AE_08", Network::NetID::AE_08)
.value("AE_09", Network::NetID::AE_09)
.value("AE_10", Network::NetID::AE_10)
.value("AE_11", Network::NetID::AE_11)
.value("FLEXRAY_01A", Network::NetID::FLEXRAY_01A)
.value("FLEXRAY_01B", Network::NetID::FLEXRAY_01B)
.value("FLEXRAY_02A", Network::NetID::FLEXRAY_02A)
.value("FLEXRAY_02B", Network::NetID::FLEXRAY_02B)
.value("LIN_05", Network::NetID::LIN_05)
.value("FLEXRAY_01", Network::NetID::FLEXRAY_01)
.value("FLEXRAY_02", Network::NetID::FLEXRAY_02)
.value("AE_12", Network::NetID::AE_12)
.value("I2C_01", Network::NetID::I2C_01)
.value("MOST_25", Network::NetID::MOST_25)
.value("MOST_50", Network::NetID::MOST_50)
.value("MOST_150", Network::NetID::MOST_150)
.value("ETHERNET_01", Network::NetID::ETHERNET_01)
.value("GMFSA", Network::NetID::GMFSA)
.value("TCP", Network::NetID::TCP)
.value("HSCAN6", Network::NetID::HSCAN6)
.value("HSCAN7", Network::NetID::HSCAN7)
.value("LIN6", Network::NetID::LIN6)
.value("LSFTCAN2", Network::NetID::LSFTCAN2)
.value("DWCAN_06", Network::NetID::DWCAN_06)
.value("DWCAN_07", Network::NetID::DWCAN_07)
.value("LIN_06", Network::NetID::LIN_06)
.value("LSFTCAN_02", Network::NetID::LSFTCAN_02)
.value("LogicalDiskInfo", Network::NetID::LogicalDiskInfo)
.value("WiVICommand", Network::NetID::WiVICommand)
.value("ScriptStatus", Network::NetID::ScriptStatus)
@@ -119,51 +119,51 @@ void init_network(pybind11::module_& m) {
.value("DeviceStatus", Network::NetID::DeviceStatus)
.value("UDP", Network::NetID::UDP)
.value("ForwardedMessage", Network::NetID::ForwardedMessage)
.value("I2C2", Network::NetID::I2C2)
.value("I2C3", Network::NetID::I2C3)
.value("I2C4", Network::NetID::I2C4)
.value("Ethernet2", Network::NetID::Ethernet2)
.value("A2B1", Network::NetID::A2B1)
.value("A2B2", Network::NetID::A2B2)
.value("Ethernet3", Network::NetID::Ethernet3)
.value("WBMS", Network::NetID::WBMS)
.value("DWCAN9", Network::NetID::DWCAN9)
.value("DWCAN10", Network::NetID::DWCAN10)
.value("DWCAN11", Network::NetID::DWCAN11)
.value("DWCAN12", Network::NetID::DWCAN12)
.value("DWCAN13", Network::NetID::DWCAN13)
.value("DWCAN14", Network::NetID::DWCAN14)
.value("DWCAN15", Network::NetID::DWCAN15)
.value("DWCAN16", Network::NetID::DWCAN16)
.value("LIN7", Network::NetID::LIN7)
.value("LIN8", Network::NetID::LIN8)
.value("SPI2", Network::NetID::SPI2)
.value("MDIO1", Network::NetID::MDIO1)
.value("MDIO2", Network::NetID::MDIO2)
.value("MDIO3", Network::NetID::MDIO3)
.value("MDIO4", Network::NetID::MDIO4)
.value("MDIO5", Network::NetID::MDIO5)
.value("MDIO6", Network::NetID::MDIO6)
.value("MDIO7", Network::NetID::MDIO7)
.value("MDIO8", Network::NetID::MDIO8)
.value("OP_Ethernet13", Network::NetID::OP_Ethernet13)
.value("OP_Ethernet14", Network::NetID::OP_Ethernet14)
.value("OP_Ethernet15", Network::NetID::OP_Ethernet15)
.value("OP_Ethernet16", Network::NetID::OP_Ethernet16)
.value("SPI3", Network::NetID::SPI3)
.value("SPI4", Network::NetID::SPI4)
.value("SPI5", Network::NetID::SPI5)
.value("SPI6", Network::NetID::SPI6)
.value("SPI7", Network::NetID::SPI7)
.value("SPI8", Network::NetID::SPI8)
.value("LIN9", Network::NetID::LIN9)
.value("LIN10", Network::NetID::LIN10)
.value("LIN11", Network::NetID::LIN11)
.value("LIN12", Network::NetID::LIN12)
.value("LIN13", Network::NetID::LIN13)
.value("LIN14", Network::NetID::LIN14)
.value("LIN15", Network::NetID::LIN15)
.value("LIN16", Network::NetID::LIN16)
.value("I2C_02", Network::NetID::I2C_02)
.value("I2C_03", Network::NetID::I2C_03)
.value("I2C_04", Network::NetID::I2C_04)
.value("ETHERNET_02", Network::NetID::ETHERNET_02)
.value("A2B_01", Network::NetID::A2B_01)
.value("A2B_02", Network::NetID::A2B_02)
.value("ETHERNET_03", Network::NetID::ETHERNET_03)
.value("WBMS_01", Network::NetID::WBMS_01)
.value("DWCAN_09", Network::NetID::DWCAN_09)
.value("DWCAN_10", Network::NetID::DWCAN_10)
.value("DWCAN_11", Network::NetID::DWCAN_11)
.value("DWCAN_12", Network::NetID::DWCAN_12)
.value("DWCAN_13", Network::NetID::DWCAN_13)
.value("DWCAN_14", Network::NetID::DWCAN_14)
.value("DWCAN_15", Network::NetID::DWCAN_15)
.value("DWCAN_16", Network::NetID::DWCAN_16)
.value("LIN_07", Network::NetID::LIN_07)
.value("LIN_08", Network::NetID::LIN_08)
.value("SPI_02", Network::NetID::SPI_02)
.value("MDIO_01", Network::NetID::MDIO_01)
.value("MDIO_02", Network::NetID::MDIO_02)
.value("MDIO_03", Network::NetID::MDIO_03)
.value("MDIO_04", Network::NetID::MDIO_04)
.value("MDIO_05", Network::NetID::MDIO_05)
.value("MDIO_06", Network::NetID::MDIO_06)
.value("MDIO_07", Network::NetID::MDIO_07)
.value("MDIO_08", Network::NetID::MDIO_08)
.value("AE_13", Network::NetID::AE_13)
.value("AE_14", Network::NetID::AE_14)
.value("AE_15", Network::NetID::AE_15)
.value("AE_16", Network::NetID::AE_16)
.value("SPI_03", Network::NetID::SPI_03)
.value("SPI_04", Network::NetID::SPI_04)
.value("SPI_05", Network::NetID::SPI_05)
.value("SPI_06", Network::NetID::SPI_06)
.value("SPI_07", Network::NetID::SPI_07)
.value("SPI_08", Network::NetID::SPI_08)
.value("LIN_09", Network::NetID::LIN_09)
.value("LIN_10", Network::NetID::LIN_10)
.value("LIN_11", Network::NetID::LIN_11)
.value("LIN_12", Network::NetID::LIN_12)
.value("LIN_13", Network::NetID::LIN_13)
.value("LIN_14", Network::NetID::LIN_14)
.value("LIN_15", Network::NetID::LIN_15)
.value("LIN_16", Network::NetID::LIN_16)
.value("Any", Network::NetID::Any)
.value("Invalid", Network::NetID::Invalid);
@@ -178,7 +178,7 @@ void init_network(pybind11::module_& m) {
.value("LSFTCAN", Network::Type::LSFTCAN)
.value("SWCAN", Network::Type::SWCAN)
.value("ISO9141", Network::Type::ISO9141)
.value("I2C", Network::Type::I2C)
.value("I2C_01", Network::Type::I2C)
.value("A2B", Network::Type::A2B)
.value("SPI", Network::Type::SPI)
.value("MDIO", Network::Type::MDIO)
+40 -28
View File
@@ -5,42 +5,54 @@
#include "icsneo/device/device.h"
#include <fstream>
namespace icsneo {
void init_device(pybind11::module_& m) {
pybind11::class_<Device, std::shared_ptr<Device>>(m, "Device")
.def("get_type", &Device::getType)
.def("get_serial", &Device::getSerial)
.def("get_serial_number", &Device::getSerialNumber)
.def("get_product_name", &Device::getProductName)
.def("open", [](Device& device) { return device.open(); }, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("close", &Device::close, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("is_open", &Device::isOpen)
.def("go_online", &Device::goOnline, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("go_offline", &Device::goOffline, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("is_online", &Device::isOnline)
.def("enable_message_polling", &Device::enableMessagePolling, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("disable_message_polling", &Device::disableMessagePolling, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("is_message_polling_enabled", &Device::isMessagePollingEnabled)
.def("get_messages", [](Device& device) { return device.getMessages(); }, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_current_message_count", &Device::getCurrentMessageCount)
.def("get_polling_message_limit", &Device::getPollingMessageLimit)
.def("set_polling_message_limit", &Device::setPollingMessageLimit)
.def("__repr__", &Device::describe)
.def("add_message_callback", &Device::addMessageCallback, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("remove_message_callback", &Device::removeMessageCallback, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("transmit", pybind11::overload_cast<std::shared_ptr<BusMessage>>(&Device::transmit), pybind11::call_guard<pybind11::gil_scoped_release>())
.def("clear_script", &Device::clearScript, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("close", &Device::close, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("describe", &Device::describe)
.def("disable_message_polling", &Device::disableMessagePolling, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("enable_message_polling", &Device::enableMessagePolling, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_current_message_count", &Device::getCurrentMessageCount)
.def("get_digital_io", &Device::getDigitalIO, pybind11::arg("type"), pybind11::arg("number"), pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_gptp_status", &Device::getGPTPStatus, pybind11::arg("timeout") = std::chrono::milliseconds(100), pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_messages", [](Device& device) { return device.getMessages(); }, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_polling_message_limit", &Device::getPollingMessageLimit)
.def("get_product_name", &Device::getProductName)
.def("get_rtc", &Device::getRTC, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_script_status", &Device::getScriptStatus, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_serial_number", &Device::getSerialNumber)
.def("get_serial", &Device::getSerial)
.def("get_supported_rx_networks", &Device::getSupportedRXNetworks, pybind11::return_value_policy::reference)
.def("get_supported_tx_networks", &Device::getSupportedTXNetworks, pybind11::return_value_policy::reference)
.def("get_rtc", &Device::getRTC, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("set_rtc", &Device::setRTC, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("describe", &Device::describe)
.def("is_online_supported", &Device::isOnlineSupported)
.def("supports_tc10", &Device::supportsTC10)
.def("request_tc10_wake", &Device::requestTC10Wake, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("request_tc10_sleep", &Device::requestTC10Sleep, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_tc10_status", &Device::getTC10Status, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_gptp_status", &Device::getGPTPStatus, pybind11::arg("timeout") = std::chrono::milliseconds(100), pybind11::call_guard<pybind11::gil_scoped_release>())
.def("__repr__", &Device::describe);
.def("get_type", &Device::getType)
.def("go_offline", &Device::goOffline, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("go_online", &Device::goOnline, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("is_message_polling_enabled", &Device::isMessagePollingEnabled)
.def("is_online_supported", &Device::isOnlineSupported)
.def("is_online", &Device::isOnline)
.def("is_open", &Device::isOpen)
.def("open", [](Device& device) { return device.open(); }, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("prepare_script_load", &Device::prepareScriptLoad, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("remove_message_callback", &Device::removeMessageCallback, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("request_tc10_sleep", &Device::requestTC10Sleep, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("request_tc10_wake", &Device::requestTC10Wake, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("set_digital_io", pybind11::overload_cast<IO, size_t, bool>(&Device::setDigitalIO), pybind11::arg("type"), pybind11::arg("number"), pybind11::arg("value"), pybind11::call_guard<pybind11::gil_scoped_release>())
.def("set_polling_message_limit", &Device::setPollingMessageLimit)
.def("set_rtc", &Device::setRTC, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("start_script", &Device::startScript, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("stop_script", &Device::stopScript, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("supports_tc10", &Device::supportsTC10)
.def("transmit", pybind11::overload_cast<std::shared_ptr<Frame>>(&Device::transmit), pybind11::call_guard<pybind11::gil_scoped_release>())
.def("upload_coremini", [](Device& device, std::string& path, Disk::MemoryType memType) { std::ifstream ifs(path, std::ios::binary); return device.uploadCoremini(ifs, memType); }, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("write_macsec_config", &Device::writeMACsecConfig, pybind11::call_guard<pybind11::gil_scoped_release>())
.def_readonly("settings", &Device::settings);
}
} // namespace icsneo
@@ -33,6 +33,7 @@ void init_devicetype(pybind11::module_& m) {
.value("EtherBADGE", DeviceType::Enum::EtherBADGE)
.value("RAD_A2B", DeviceType::Enum::RAD_A2B)
.value("RADEpsilon", DeviceType::Enum::RADEpsilon)
.value("RADEpsilonXL", DeviceType::Enum::RADEpsilonXL)
.value("RADGalaxy2", DeviceType::Enum::RADGalaxy2)
.value("RADMoon3", DeviceType::Enum::RADMoon3)
.value("RADComet", DeviceType::Enum::RADComet)
@@ -48,10 +49,14 @@ void init_devicetype(pybind11::module_& m) {
.value("OBD2_PRO", DeviceType::Enum::OBD2_PRO)
.value("ECUChip_UART", DeviceType::Enum::ECUChip_UART)
.value("PLASMA", DeviceType::Enum::PLASMA)
.value("DONT_REUSE0", DeviceType::Enum::DONT_REUSE0)
.value("NEOAnalog", DeviceType::Enum::NEOAnalog)
.value("CT_OBD", DeviceType::Enum::CT_OBD)
.value("DONT_REUSE1", DeviceType::Enum::DONT_REUSE1)
.value("DONT_REUSE2", DeviceType::Enum::DONT_REUSE2)
.value("ION", DeviceType::Enum::ION)
.value("RADStar", DeviceType::Enum::RADStar)
.value("DONT_REUSE3", DeviceType::Enum::DONT_REUSE3)
.value("VCAN4_4", DeviceType::Enum::VCAN4_4)
.value("VCAN4_2", DeviceType::Enum::VCAN4_2)
.value("CMProbe", DeviceType::Enum::CMProbe)
@@ -0,0 +1,47 @@
#include <pybind11/pybind11.h>
#include <pybind11/stl.h>
#include <pybind11/stl_bind.h>
#include <pybind11/functional.h>
#include <pybind11/chrono.h>
#include "icsneo/device/idevicesettings.h"
#include <fstream>
namespace icsneo {
struct DeviceSettingsNamespace {
using EthLinkMode = AELinkMode;
using LinkSpeed = EthLinkSpeed;
};
void init_idevicesettings(pybind11::module_& m) {
pybind11::class_<DeviceSettingsNamespace> settings(m, "Settings");
pybind11::enum_<DeviceSettingsNamespace::EthLinkMode>(settings, "EthernetLinkMode")
.value("Auto", DeviceSettingsNamespace::EthLinkMode::AE_LINK_AUTO)
.value("Slave", DeviceSettingsNamespace::EthLinkMode::AE_LINK_SLAVE)
.value("Master", DeviceSettingsNamespace::EthLinkMode::AE_LINK_MASTER);
pybind11::enum_<DeviceSettingsNamespace::LinkSpeed>(settings, "EthernetLinkSpeed")
.value("Speed10M", DeviceSettingsNamespace::LinkSpeed::ETH_SPEED_10)
.value("Speed100M", DeviceSettingsNamespace::LinkSpeed::ETH_SPEED_100)
.value("Speed1G", DeviceSettingsNamespace::LinkSpeed::ETH_SPEED_1000)
.value("Speed2_5G", DeviceSettingsNamespace::LinkSpeed::ETH_SPEED_2500)
.value("Speed5G", DeviceSettingsNamespace::LinkSpeed::ETH_SPEED_5000)
.value("Speed10G", DeviceSettingsNamespace::LinkSpeed::ETH_SPEED_10000);
pybind11::class_<IDeviceSettings, std::shared_ptr<IDeviceSettings>>(m, "IDeviceSettings")
.def("apply", &IDeviceSettings::apply, pybind11::arg("temporary") = 0, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("apply_defaults", &IDeviceSettings::applyDefaults, pybind11::arg("temporary") = 0, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_phy_enable", &IDeviceSettings::getPhyEnable, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_phy_mode", &IDeviceSettings::getPhyMode, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("get_phy_speed", &IDeviceSettings::getPhySpeed, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("set_phy_enable", &IDeviceSettings::setPhyEnable, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("set_phy_mode", &IDeviceSettings::setPhyMode, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("set_phy_speed", &IDeviceSettings::setPhySpeed, pybind11::call_guard<pybind11::gil_scoped_release>())
.def("refresh", &IDeviceSettings::refresh, pybind11::arg("ignoreChecksum") = 0, pybind11::call_guard<pybind11::gil_scoped_release>());
}
} // namespace icsneo
@@ -0,0 +1,26 @@
#include <pybind11/pybind11.h>
#include <pybind11/stl.h>
#include <pybind11/functional.h>
#include "icsneo/disk/diskdriver.h"
namespace icsneo {
// binding namespace workaround to avoid submodules
struct DiskNamespace {
using Access = icsneo::Disk::Access;
using MemoryType = icsneo::Disk::MemoryType;
};
void init_diskdriver(pybind11::module_& m) {
pybind11::class_<DiskNamespace> disk(m, "Disk");
pybind11::enum_<Disk::Access>(disk, "Access")
.value("None", Disk::Access::None)
.value("EntireCard", Disk::Access::EntireCard)
.value("VSA", Disk::Access::VSA);
pybind11::enum_<Disk::MemoryType>(disk, "MemoryType")
.value("Flash", Disk::MemoryType::Flash)
.value("SD", Disk::MemoryType::SD);
}
} // namespace icsneo
+12
View File
@@ -10,6 +10,7 @@ void init_event(pybind11::module_&);
void init_eventcallback(pybind11::module_&);
void init_eventmanager(pybind11::module_&);
void init_network(pybind11::module_&);
void init_io(pybind11::module_&);
void init_devicetype(pybind11::module_&);
void init_message(pybind11::module_&);
void init_canmessage(pybind11::module_&);
@@ -20,10 +21,15 @@ void init_tc10statusmessage(pybind11::module_&);
void init_gptpstatusmessage(pybind11::module_&);
void init_mdiomessage(pybind11::module_&);
void init_ethernetstatusmessage(pybind11::module_&);
void init_macsecmessage(pybind11::module_&);
void init_scriptstatusmessage(pybind11::module_&);
void init_diskdriver(pybind11::module_&);
void init_device(pybind11::module_&);
void init_messagefilter(pybind11::module_&);
void init_messagecallback(pybind11::module_&);
void init_version(pybind11::module_&);
void init_flexraymessage(pybind11::module_& m);
void init_idevicesettings(pybind11::module_&);
PYBIND11_MODULE(icsneopy, m) {
pybind11::options options;
@@ -36,6 +42,7 @@ PYBIND11_MODULE(icsneopy, m) {
init_version(m);
init_devicetype(m);
init_network(m);
init_io(m);
init_message(m);
init_canmessage(m);
init_canerrormessage(m);
@@ -45,9 +52,14 @@ PYBIND11_MODULE(icsneopy, m) {
init_gptpstatusmessage(m);
init_mdiomessage(m);
init_ethernetstatusmessage(m);
init_macsecmessage(m);
init_scriptstatusmessage(m);
init_messagefilter(m);
init_messagecallback(m);
init_diskdriver(m);
init_device(m);
init_flexraymessage(m);
init_idevicesettings(m);
m.def("find_all_devices", &FindAllDevices);
m.def("get_supported_devices", &GetSupportedDevices);
-17
View File
@@ -1,17 +0,0 @@
# Generated by Cargo
# will have compiled files and executables
debug/
target/
# These are backup files generated by rustfmt
**/*.rs.bk
# MSVC Windows builds of rustc generate these, which store debugging information
*.pdb
# RustRover
# JetBrains specific template is maintained in a separate JetBrains.gitignore that can
# be found at https://github.com/github/gitignore/blob/main/Global/JetBrains.gitignore
# and can be added to the global gitignore or merged into this file. For a more nuclear
# option (not recommended) you can uncomment the following to ignore the entire idea folder.
#.idea/
-293
View File
@@ -1,293 +0,0 @@
# This file is automatically @generated by Cargo.
# It is not intended for manual editing.
version = 4
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name = "aho-corasick"
version = "1.1.3"
source = "registry+https://github.com/rust-lang/crates.io-index"
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dependencies = [
"memchr",
]
[[package]]
name = "bindgen"
version = "0.71.1"
source = "registry+https://github.com/rust-lang/crates.io-index"
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"bitflags",
"cexpr",
"clang-sys",
"itertools",
"log",
"prettyplease",
"proc-macro2",
"quote",
"regex",
"rustc-hash",
"shlex",
"syn",
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[[package]]
name = "bitflags"
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"nom",
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]
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name = "log"
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name = "prettyplease"
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-22
View File
@@ -1,22 +0,0 @@
[package]
name = "icsneoc2rs"
version = "0.1.0"
edition = "2021"
[lib]
name = "icsneoc2rs"
crate-type = ["rlib", "staticlib", "cdylib"]
path = "src/lib.rs"
[[example]]
name = "simple"
path = "examples/simple.rs"
[dev-dependencies]
scopeguard = "1.2.0"
[features]
static = []
[build-dependencies]
bindgen = "0.71.1"
-40
View File
@@ -1,40 +0,0 @@
use std::env;
use std::path::PathBuf;
pub fn main() {
// Tell cargo to look for shared libraries in the specified directory
println!("cargo:rustc-link-search=../../../build");
// Tell cargo to tell rustc to link the system
// shared library.
println!("cargo:rustc-link-lib=icsneoc2");
// The bindgen::Builder is the main entry point
// to bindgen, and lets you build up options for
// the resulting bindings.
let bindings = bindgen::Builder::default()
// The input header we would like to generate
// bindings for.
.header("../../../include/icsneo/icsneoc2.h")
.clang_arg("-I../../../include")
// Tell cargo to invalidate the built crate whenever any of the
// included header files changed.
.parse_callbacks(Box::new(bindgen::CargoCallbacks::new()))
.derive_default(true)
.derive_debug(true)
.derive_partialeq(true)
.derive_copy(true)
.default_enum_style(bindgen::EnumVariation::Rust { non_exhaustive: true })
.default_alias_style(bindgen::AliasVariation::TypeAlias)
.generate_cstr(true)
// Finish the builder and generate the bindings.
.generate()
// Unwrap the Result and panic on failure.
.expect("Unable to generate bindings");
// Write the bindings to the $OUT_DIR/bindings.rs file.
let out_path = PathBuf::from(env::var("OUT_DIR").unwrap());
bindings
.write_to_file(out_path.join("bindings.rs"))
.expect("Couldn't write bindings!");
}
-333
View File
@@ -1,333 +0,0 @@
use icsneoc2rs::ffi::_icsneoc2_msg_bus_type_t::*;
use icsneoc2rs::ffi::_icsneoc2_msg_type_t::*;
use icsneoc2rs::ffi::_icsneoc2_netid_t;
use icsneoc2rs::ffi::_icsneoc2_netid_t::*;
use icsneoc2rs::ffi::_icsneoc2_open_options_t::*;
use icsneoc2rs::ffi::icsneoc2_message_t;
use icsneoc2rs::ffi::icsneoc2_msg_bus_type_t;
use icsneoc2rs::ffi::icsneoc2_msg_type_t;
use icsneoc2rs::ffi::icsneoc2_netid_t;
use icsneoc2rs::Device;
use icsneoc2rs::Error;
use icsneoc2rs::Result as ICSNeoResult;
use scopeguard::defer;
fn main() -> ICSNeoResult<()> {
print!("Finding devices... ");
let devices = Device::find_all(255)?;
println!(
"OK, {} device{} found...",
devices.len(),
if devices.len() > 1 { "s" } else { "" }
);
for device in devices {
device.device_is_valid()?;
// Get description of the device
let description = match device.device_description_get() {
Ok(description) => description,
Err(err) => {
println!("Failed to get description of device: {err}");
continue;
}
};
println!("{} @ Handle {:?}", description, device.handle);
// Get/Set open options
let mut open_options = match device.device_open_options_get() {
Ok(value) => value,
Err(err) => {
println!("Failed to get open options of device: {err}");
continue;
}
};
// Disable Syncing RTC and going online
open_options &= !(icsneoc2_open_options_sync_rtc as u32);
open_options &= !(icsneoc2_open_options_go_online as u32);
match device.device_open_options_set(open_options) {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("\tDevice open options: {open_options:#02x}");
// Open the device
print!("\tOpening device... ");
match device.device_open() {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("OK");
defer! {
print_device_events(&device, &description).expect("Critical: Failed to print device events");
}
// Get timestamp resolution of the device
print!("\tGetting timestamp resolution... ");
let timestamp_resolution = match device.device_timestamp_resolution_get() {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("{timestamp_resolution}ns");
// Get baudrates for HSCAN
print!("\tGetting HSCAN baudrate... ");
let baudrate = match device.device_baudrate_get(icsneoc2_netid_hscan) {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("{baudrate}mbit/s");
// Get FD baudrates for HSCAN
print!("\tGetting FD HSCAN baudrate... ");
let fd_baudrate = match device.device_canfd_baudrate_get(icsneoc2_netid_hscan) {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("{fd_baudrate}mbit/s");
// Set baudrates for HSCAN
// saveToDevice: If this is set to true, the baudrate will be saved on the device
// and will persist through a power cycle
print!("\tSetting HSCAN baudrate... ");
let save_to_device = false;
match device.device_baudrate_set(icsneoc2_netid_hscan, baudrate, save_to_device) {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("OK");
// Set FD baudrates for HSCAN
print!("\tSetting FD HSCAN baudrate... ");
match device.device_canfd_baudrate_set(icsneoc2_netid_hscan, fd_baudrate, save_to_device) {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("OK");
// Get RTC
print!("\tGetting RTC... ");
let current_rtc = match device.device_rtc_get() {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("{current_rtc}");
// Set RTC
print!("\tSetting RTC... ");
match device.device_rtc_set(current_rtc) {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("OK");
// Get RTC
print!("\tGetting RTC... ");
let rtc = match device.device_rtc_get() {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("{rtc}");
// Go online, start acking traffic
print!("\tGoing online... ");
match device.device_go_online(true) {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
// Redundant check to show how to check if the device is online, if the previous
// icsneoc2_device_go_online call was successful we can assume we are online already
let is_online = match device.device_is_online() {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("{}", if is_online { "Online" } else { "Offline" });
// Transmit CAN messages
if transmit_can_messages(&device).is_err() {
continue;
}
println!("\tWaiting 1 second for messages...");
std::thread::sleep(std::time::Duration::from_secs(1));
// Get the messages
let messages = match device.device_messages_get(20000, 3000) {
Ok(messages) => messages,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
// Process the messages
if process_messages(&device, messages).is_err() {
continue;
}
// Close the device
print!("\tClosing device... ");
match device.device_close() {
Ok(value) => value,
Err(err) => {
print_error(&device, &description, err);
continue;
}
};
println!("OK");
}
Ok(())
}
fn print_error(device: &Device, device_description: &String, err: Error) {
println!("Failed: {err}");
print_device_events(device, device_description)
.expect("Critical: Failed to print device events");
}
fn transmit_can_messages(device: &Device) -> ICSNeoResult<()> {
const MESSAGE_COUNT: usize = 100;
println!("\tTransmitting {MESSAGE_COUNT} messages...");
for i in 0..MESSAGE_COUNT {
let message = match device.message_can_create(1) {
Ok(messages) => messages[0],
Err(err) => {
println!("Failed to create CAN message #{i}: {err}");
continue;
}
};
device.message_netid_set(message, icsneoc2_netid_hscan)?;
device.message_can_arbid_set(message, 0x10)?;
device.message_can_canfd_set(message, true)?;
device.message_can_extended_set(message, true)?;
device.message_can_baudrate_switch_set(message, true)?;
device.message_data_set(
message,
vec![
(i >> 56 & 0xFF) as u8,
(i >> 48 & 0xFF) as u8,
(i >> 40 & 0xFF) as u8,
(i >> 32 & 0xFF) as u8,
(i >> 24 & 0xFF) as u8,
(i >> 16 & 0xFF) as u8,
(i >> 8 & 0xFF) as u8,
(i & 0xFF) as u8,
],
)?;
device.message_can_dlc_set(message, -1)?;
device.device_messages_transmit(vec![message])?;
}
Ok(())
}
fn process_messages(device: &Device, messages: Vec<*mut icsneoc2_message_t>) -> ICSNeoResult<()> {
let mut tx_count: u32 = 0;
for (i, message) in messages.iter().enumerate() {
// Get the message type
let msg_type = device.message_type_get(*message)?;
// Get the message type name
let msg_type_name = device.message_type_name_get(msg_type)?;
// Check if the message is a bus message, ignore otherwise
if msg_type != icsneoc2_msg_type_bus as icsneoc2_msg_type_t {
println!("\tIgnoring message type : {msg_type} ({msg_type_name})");
continue;
}
// Get the message bus type
let msg_bus_type = device.message_bus_type_get(*message)?;
// Get the message type name
let msg_bus_type_name = device.bus_type_name_get(msg_bus_type)?;
// Check if message is a transmit message
if device.message_is_transmit(*message)? {
tx_count += 1;
continue;
}
println!("\t{i} Message type: {msg_type} bus type: {msg_bus_type_name} ({msg_bus_type})\n");
// Check if the message is a CAN message, ignore otherwise
if msg_bus_type == icsneoc2_msg_bus_type_can as icsneoc2_msg_bus_type_t {
let netid = device.message_netid_get(*message)?;
let netid_name = device.netid_name_get(netid)?;
let arbid = device.message_can_arbid_get(*message)?;
let dlc = device.message_can_dlc_get(*message)?;
let is_remote = device.message_can_is_remote(*message)?;
let is_canfd = device.message_can_is_canfd(*message)?;
let is_extended = device.message_can_is_extended(*message)?;
let data = device.message_data_get(*message, 64)?;
// Finally lets print the RX message
println!("\t NetID: {netid_name} ({:#02x})\tArbID: {arbid:#02x}\t DLC: {dlc}\t Remote: {is_remote}\t \
CANFD: {is_canfd}\t Extended: {is_extended}\t Data length: {}\n", netid as icsneoc2_netid_t,data.len());
println!("\t Data: {data:#02x?}\n");
} else {
println!("\tIgnoring bus message type: {msg_bus_type} ({msg_bus_type_name})\n");
}
}
println!(
"\tReceived {} messages total, {} were TX messages",
messages.len(),
tx_count
);
Ok(())
}
fn print_device_events(device: &Device, device_description: &String) -> ICSNeoResult<()> {
let events = match device.device_events_get(1024) {
Ok(events) => events,
Err(err) => {
println!("Failed to get device events: {err}");
return Err(err);
}
};
for (i, event) in events.iter().enumerate() {
let description = match device.event_description_get(*event) {
Ok(description) => description,
Err(err) => {
println!("Failed to get event description: {err}");
continue;
}
};
println!("\t{device_description}: Event {i}: {description}");
}
// Get global events
let global_events = match device.events_get(1024) {
Ok(events) => events,
Err(err) => {
println!("Failed to get global events: {err}");
return Err(err);
}
};
for (i, event) in global_events.iter().enumerate() {
let description = match device.event_description_get(*event) {
Ok(description) => description,
Err(err) => {
println!("Failed to get event description: {err}");
continue;
}
};
println!("\t{device_description}: Global Event {i}: {description}");
}
println!(
"\t{device_description}: Received {} events and {} global events\n",
events.len(),
global_events.len()
);
Ok(())
}
-5
View File
@@ -1,5 +0,0 @@
#![allow(non_upper_case_globals)]
#![allow(non_camel_case_types)]
#![allow(non_snake_case)]
include!(concat!(env!("OUT_DIR"), "/bindings.rs"));
-902
View File
@@ -1,902 +0,0 @@
pub mod ffi;
use ffi::_icsneoc2_error_t::{icsneoc2_error_invalid_device, icsneoc2_error_success};
use ffi::_icsneoc2_open_options_t::*;
use ffi::*;
use std::ffi::CString;
use std::fmt::Display;
#[derive(Debug, Clone)]
pub enum Error {
/// icsneoc2 API error
APIError(icsneoc2_error_t, String),
}
impl Display for Error {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
match self {
Error::APIError(error_code, error_string) => write!(f, "API Error: \"{}\" ({})", error_string, error_code),
}
}
}
pub type Result<T> = core::result::Result<T, Error>;
#[derive(Debug, Clone)]
pub struct Device {
/// Handle to the device.
pub handle: *mut icsneoc2_device_t,
}
impl Drop for Device {
fn drop(&mut self) {
// Make sure the device is closed before we go out of scope.
self.device_close().expect("Failed to close device!");
}
}
impl Device {
pub fn find_all(device_count: u32) -> Result<Vec<Self>> {
// Find all the devices
const MAX_DEVICE_COUNT: u32 = 255;
let mut devices: [*mut icsneoc2_device_t; MAX_DEVICE_COUNT as usize] =
[std::ptr::null_mut(); 255];
let mut devices_count: u32 = if device_count > MAX_DEVICE_COUNT {
MAX_DEVICE_COUNT
} else {
device_count
};
let res = unsafe {
icsneoc2_device_find_all(
devices.as_mut_ptr(),
&mut devices_count as *mut u32,
std::ptr::null_mut(),
)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
// Return the results
let found_devices: Vec<Self> = devices[..devices_count as usize]
.iter()
.map(|d| Self { handle: *d })
.collect();
Ok(found_devices)
}
pub fn bus_type_name_get(&self, bus_type: icsneoc2_msg_bus_type_t) -> Result<String> {
// Get the string
let mut str: Vec<u8> = vec![0; 255];
let mut str_length: u32 = 255;
let res = unsafe {
icsneoc2_bus_type_name_get(bus_type, str.as_mut_ptr() as *mut i8, &mut str_length)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
// Convert the vec to an String
str.resize(str_length as usize, 0);
let str_string = {
CString::new(str)
.expect("CString::new failed")
.into_string()
.expect("CString::new::into_string")
};
Ok(str_string)
}
pub fn device_baudrate_get(&self, netid: _icsneoc2_netid_t) -> Result<u64> {
let mut value: u64 = 0;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_baudrate_get(self.handle, netid as icsneoc2_netid_t, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn device_baudrate_set(
&self,
netid: _icsneoc2_netid_t,
value: u64,
save: bool,
) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_baudrate_set(self.handle, netid as icsneoc2_netid_t, value, save) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn device_canfd_baudrate_get(&self, netid: _icsneoc2_netid_t) -> Result<u64> {
let mut value: u64 = 0;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_canfd_baudrate_get(self.handle, netid as icsneoc2_netid_t, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn device_canfd_baudrate_set(
&self,
netid: _icsneoc2_netid_t,
value: u64,
save: bool,
) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_canfd_baudrate_set(self.handle, netid as icsneoc2_netid_t, value, save) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn device_close(&self) -> Result<()> {
let res: icsneoc2_error_t = unsafe { ffi::icsneoc2_device_close(self.handle) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn device_description_get(&self) -> Result<String> {
// Get the error code
let mut description: Vec<u8> = vec![0; 255];
let mut description_length: u32 = 255;
let res = unsafe {
icsneoc2_device_description_get(
self.handle,
description.as_mut_ptr() as *mut i8,
&mut description_length,
)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
// Convert the vec to an String
description.resize(description_length as usize, 0);
let description_str = {
CString::new(description)
.expect("CString::new failed")
.into_string()
.expect("CString::new::into_string")
};
Ok(description_str)
}
pub fn device_events_get(&self, event_count: u32) -> Result<Vec<*mut icsneoc2_event_t>> {
let mut events: Vec<*mut icsneoc2_event_t> =
vec![std::ptr::null_mut(); event_count as usize];
let mut event_count: u32 = event_count;
let res: icsneoc2_error_t = unsafe {
ffi::icsneoc2_device_events_get(self.handle, events.as_mut_ptr(), &mut event_count)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
events.resize(event_count as usize, std::ptr::null_mut());
Ok(events)
}
pub fn device_go_online(&self, go_online: bool) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_go_online(self.handle, go_online) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn device_is_online(&self) -> Result<bool> {
let mut is_online: bool = false;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_is_online(self.handle, &mut is_online) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(is_online)
}
pub fn device_is_online_supported(&self) -> Result<bool> {
let mut is_online_supported: bool = false;
let res: icsneoc2_error_t = unsafe {
ffi::icsneoc2_device_is_online_supported(self.handle, &mut is_online_supported)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(is_online_supported)
}
pub fn device_is_valid(&self) -> Result<bool> {
let res: icsneoc2_error_t = unsafe { icsneoc2_device_is_valid(self.handle) };
match res {
res if res == icsneoc2_error_success as icsneoc2_error_t => Ok(true),
res if res == icsneoc2_error_invalid_device as icsneoc2_error_t => Ok(false),
_ => Err(Self::error_code_get(res)),
}
}
pub fn device_is_open(&self) -> Result<bool> {
let mut is_open: bool = false;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_is_open(self.handle, &mut is_open) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(is_open)
}
pub fn device_is_disconnected(&self) -> Result<bool> {
let mut is_disconnected: bool = false;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_is_disconnected(self.handle, &mut is_disconnected) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(is_disconnected)
}
pub fn device_load_default_settings(&self, save: bool) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_load_default_settings(self.handle, save) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn device_message_count_get(&self) -> Result<u32> {
let mut value: u32 = 0;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_message_count_get(self.handle, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn device_message_polling_get(&self) -> Result<bool> {
let mut value: bool = false;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_message_polling_get(self.handle, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn device_message_polling_limit_get(&self) -> Result<u32> {
let mut value: u32 = 0;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_message_polling_limit_get(self.handle, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn device_message_polling_set(&self, enable: bool) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_message_polling_set(self.handle, enable) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn device_message_polling_set_limit(&self, value: u32) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_message_polling_set_limit(self.handle, value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn device_messages_get(
&self,
message_count: u32,
timeout_ms: u32,
) -> Result<Vec<*mut icsneoc2_message_t>> {
let mut messages: Vec<*mut icsneoc2_message_t> =
vec![std::ptr::null_mut(); message_count as usize];
let mut message_count: u32 = message_count;
let res: icsneoc2_error_t = unsafe {
ffi::icsneoc2_device_messages_get(
self.handle,
messages.as_mut_ptr(),
&mut message_count,
timeout_ms,
)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
messages.resize(message_count as usize, std::ptr::null_mut());
Ok(messages)
}
pub fn device_messages_transmit(&self, messages: Vec<*mut icsneoc2_message_t>) -> Result<u32> {
let mut messages_count: u32 = messages.len() as u32;
let mut messages = messages;
let res: icsneoc2_error_t = unsafe {
ffi::icsneoc2_device_messages_transmit(
self.handle,
messages.as_mut_ptr(),
&mut messages_count,
)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(messages_count)
}
pub fn device_open(&self) -> Result<()> {
let res: icsneoc2_error_t = unsafe { ffi::icsneoc2_device_open(self.handle) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn device_open_options_get(&self) -> Result<ffi::icsneoc2_open_options_t> {
let mut open_options: ffi::icsneoc2_open_options_t =
icsneoc2_open_options_none as ffi::icsneoc2_open_options_t;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_open_options_get(self.handle, &mut open_options) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(open_options)
}
pub fn device_open_options_set(
&self,
open_options: ffi::icsneoc2_open_options_t,
) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_open_options_set(self.handle, open_options) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn device_rtc_get(&self) -> Result<i64> {
let mut value: i64 = 0;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_rtc_get(self.handle, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn device_rtc_set(&self, value: i64) -> Result<()> {
let res: icsneoc2_error_t = unsafe { ffi::icsneoc2_device_rtc_set(self.handle, value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn device_serial_get(&self) -> Result<String> {
// Get the string
let mut str: Vec<u8> = vec![0; 255];
let mut str_length: u32 = 255;
let res = unsafe {
icsneoc2_device_serial_get(self.handle, str.as_mut_ptr() as *mut i8, &mut str_length)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
// Convert the vec to an String
str.resize(str_length as usize, 0);
let str_string = {
CString::new(str)
.expect("CString::new failed")
.into_string()
.expect("CString::new::into_string")
};
Ok(str_string)
}
pub fn device_supports_tc10(&self) -> Result<bool> {
let mut value: bool = false;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_supports_tc10(self.handle, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn device_timestamp_resolution_get(&self) -> Result<u32> {
let mut timestamp_resolution: u32 = 0;
let res: icsneoc2_error_t = unsafe {
ffi::icsneoc2_device_timestamp_resolution_get(self.handle, &mut timestamp_resolution)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(timestamp_resolution)
}
pub fn device_type_from_type(&self, device_type: icsneoc2_devicetype_t) -> Result<String> {
// Get the string
let mut str: Vec<u8> = vec![0; 255];
let mut str_length: u32 = 255;
let res = unsafe {
icsneoc2_device_type_name_get(
device_type,
str.as_mut_ptr() as *mut i8,
&mut str_length,
)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
// Convert the vec to an String
str.resize(str_length as usize, 0);
let str_string = {
CString::new(str)
.expect("CString::new failed")
.into_string()
.expect("CString::new::into_string")
};
Ok(str_string)
}
pub fn device_type_get(&self) -> Result<icsneoc2_devicetype_t> {
let mut value: icsneoc2_devicetype_t = 0;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_device_type_get(self.handle, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn error_code_get(error_code: icsneoc2_error_t) -> Error {
// Get the error code
let mut error_description: Vec<u8> = vec![0; 255];
let mut error_description_length: u32 = 255;
let res = unsafe {
icsneoc2_error_code_get(
error_code,
error_description.as_mut_ptr() as *mut i8,
&mut error_description_length,
)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Error::APIError(res, "icsneoc2_error_code_get() failed.".to_string());
}
// Convert the vec to an String
error_description.resize(error_description_length as usize, 0);
let error_str = CString::new(error_description)
.expect("CString::new failed")
.into_string()
.expect("CString::new::into_string");
Error::APIError(error_code, error_str)
}
pub fn event_description_get(&self, event: *mut icsneoc2_event_t) -> Result<String> {
// Get the string
let mut str: Vec<u8> = vec![0; 255];
let mut str_length: u32 = 255;
let res = unsafe {
icsneoc2_event_description_get(event, str.as_mut_ptr() as *mut i8, &mut str_length)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
// Convert the vec to an String
str.resize(str_length as usize, 0);
let str_string = {
CString::new(str)
.expect("CString::new failed")
.into_string()
.expect("CString::new::into_string")
};
Ok(str_string)
}
pub fn events_get(&self, event_count: u32) -> Result<Vec<*mut icsneoc2_event_t>> {
let mut events: Vec<*mut icsneoc2_event_t> =
vec![std::ptr::null_mut(); event_count as usize];
let mut event_count: u32 = event_count;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_events_get(events.as_mut_ptr(), &mut event_count) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
events.resize(event_count as usize, std::ptr::null_mut());
Ok(events)
}
pub fn message_bus_type_get(
&self,
message: *mut icsneoc2_message_t,
) -> Result<icsneoc2_msg_bus_type_t> {
let mut value: icsneoc2_msg_bus_type_t = 0;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_bus_type_get(self.handle, message, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn message_can_arbid_get(&self, message: *mut icsneoc2_message_t) -> Result<u32> {
let mut value: u32 = 0;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_can_arbid_get(self.handle, message, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn message_can_arbid_set(
&self,
message: *mut icsneoc2_message_t,
value: u32,
) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_can_arbid_set(self.handle, message, value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn message_can_baudrate_switch_get(
&self,
message: *mut icsneoc2_message_t,
) -> Result<bool> {
let mut value: bool = false;
let res: icsneoc2_error_t = unsafe {
ffi::icsneoc2_message_can_baudrate_switch_get(self.handle, message, &mut value)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn message_can_baudrate_switch_set(
&self,
message: *mut icsneoc2_message_t,
value: bool,
) -> Result<()> {
let res: icsneoc2_error_t = unsafe {
ffi::icsneoc2_message_can_baudrate_switch_set(self.handle, message, value)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn message_can_canfd_set(
&self,
message: *mut icsneoc2_message_t,
value: bool,
) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_can_canfd_set(self.handle, message, value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn message_can_create(&self, message_count: u32) -> Result<Vec<*mut icsneoc2_message_t>> {
let mut messages: Vec<*mut icsneoc2_message_t> =
vec![std::ptr::null_mut(); message_count as usize];
let res: icsneoc2_error_t = unsafe {
ffi::icsneoc2_message_can_create(self.handle, messages.as_mut_ptr(), message_count)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(messages)
}
pub fn message_can_dlc_get(&self, message: *mut icsneoc2_message_t) -> Result<i32> {
let mut value: i32 = 0;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_can_dlc_get(self.handle, message, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn message_can_dlc_set(&self, message: *mut icsneoc2_message_t, value: i32) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_can_dlc_set(self.handle, message, value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn message_can_error_state_indicator_get(
&self,
message: *mut icsneoc2_message_t,
) -> Result<bool> {
let mut value: bool = false;
let res: icsneoc2_error_t = unsafe {
ffi::icsneoc2_message_can_error_state_indicator_get(self.handle, message, &mut value)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn message_can_extended_set(
&self,
message: *mut icsneoc2_message_t,
value: bool,
) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_can_extended_set(self.handle, message, value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn message_can_free(&self, message: *mut icsneoc2_message_t) -> Result<()> {
let res: icsneoc2_error_t = unsafe { ffi::icsneoc2_message_can_free(self.handle, message) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn message_can_is_canfd(&self, message: *mut icsneoc2_message_t) -> Result<bool> {
let mut value: bool = false;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_can_is_canfd(self.handle, message, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn message_can_is_extended(&self, message: *mut icsneoc2_message_t) -> Result<bool> {
let mut value: bool = false;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_can_is_extended(self.handle, message, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn message_can_is_remote(&self, message: *mut icsneoc2_message_t) -> Result<bool> {
let mut value: bool = false;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_can_is_remote(self.handle, message, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn message_data_get(
&self,
message: *mut icsneoc2_message_t,
data_length: u32,
) -> Result<Vec<u8>> {
let mut data: Vec<u8> = vec![0; data_length as usize];
let mut data_length = data_length;
let res: icsneoc2_error_t = unsafe {
ffi::icsneoc2_message_data_get(
self.handle,
message,
data.as_mut_ptr(),
&mut data_length,
)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
data.resize(data_length as usize, 0);
Ok(data)
}
pub fn message_data_set(&self, message: *mut icsneoc2_message_t, data: Vec<u8>) -> Result<()> {
let mut data = data;
let res: icsneoc2_error_t = unsafe {
ffi::icsneoc2_message_data_set(
self.handle,
message,
data.as_mut_ptr(),
data.len() as u32,
)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn message_is_transmit(&self, message: *mut icsneoc2_message_t) -> Result<bool> {
let mut value: bool = false;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_is_transmit(self.handle, message, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn message_is_valid(&self, message: *mut icsneoc2_message_t) -> Result<bool> {
let mut value: bool = false;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_is_valid(self.handle, message, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn message_netid_get(&self, message: *mut icsneoc2_message_t) -> Result<_icsneoc2_netid_t> {
let mut value: icsneoc2_netid_t = 0;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_netid_get(self.handle, message, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
// TODO: This is gross, there is probably a better way to do this.
// TryFrom impl would be a lot of work to implement because there are so many values.
// We are relying on the function call to always return a valid value.
let value: _icsneoc2_netid_t = unsafe { std::mem::transmute(value as u32) };
Ok(value)
}
pub fn message_netid_set(
&self,
message: *mut icsneoc2_message_t,
value: _icsneoc2_netid_t,
) -> Result<()> {
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_netid_set(self.handle, message, value as icsneoc2_netid_t) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(())
}
pub fn message_type_get(
&self,
message: *mut icsneoc2_message_t,
) -> Result<icsneoc2_msg_type_t> {
let mut value: icsneoc2_msg_type_t = 0;
let res: icsneoc2_error_t =
unsafe { ffi::icsneoc2_message_type_get(self.handle, message, &mut value) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
Ok(value)
}
pub fn message_type_name_get(&self, msg_type: icsneoc2_msg_type_t) -> Result<String> {
// Get the string
let mut str: Vec<u8> = vec![0; 255];
let mut str_length: u32 = 255;
let res = unsafe {
icsneoc2_message_type_name_get(msg_type, str.as_mut_ptr() as *mut i8, &mut str_length)
};
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
// Convert the vec to an String
str.resize(str_length as usize, 0);
let str_string = {
CString::new(str)
.expect("CString::new failed")
.into_string()
.expect("CString::new::into_string")
};
Ok(str_string)
}
pub fn netid_name_get(&self, netid: _icsneoc2_netid_t) -> Result<String> {
// Get the string
let mut str: Vec<u8> = vec![0; 255];
let mut str_length: u32 = 255;
let res =
unsafe { icsneoc2_netid_name_get(netid as icsneoc2_netid_t, str.as_mut_ptr() as *mut i8, &mut str_length) };
// Check the error code
if res != icsneoc2_error_success as icsneoc2_error_t {
return Err(Self::error_code_get(res));
}
// Convert the vec to an String
str.resize(str_length as usize, 0);
let str_string = {
CString::new(str)
.expect("CString::new failed")
.into_string()
.expect("CString::new::into_string")
};
Ok(str_string)
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_device_find_all() {
let devices = Device::find_all(0).unwrap();
assert_eq!(devices.len(), 0);
}
}
+3 -2
View File
@@ -1,7 +1,8 @@
#!/bin/sh
export CFLAGS="-Wall -Werror"
export CXXFLAGS="-Wall -Werror"
cmake -GNinja -Bbuild -DCMAKE_BUILD_TYPE=Release -DLIBICSNEO_BUILD_EXAMPLES=ON \
-DLIBICSNEO_BUILD_UNIT_TESTS=ON -DLIBICSNEO_BUILD_SYSTEM_TESTS=ON -DLIBICSNEO_ENABLE_TCP=OFF || exit 1
-DLIBICSNEO_BUILD_UNIT_TESTS=ON -DLIBICSNEO_ENABLE_TCP=OFF || exit 1
cmake --build build || exit 1
+3 -3
View File
@@ -4,9 +4,9 @@ mkdir build
REM build
cd build
set CFLAGS=/WX
set CXXFLAGS=/WX
cmake -GNinja -DCMAKE_BUILD_TYPE=RelWithDebInfo -DLIBICSNEO_BUILD_UNIT_TESTS=ON -DLIBICSNEO_BUILD_SYSTEM_TESTS=ON -DLIBICSNEO_ENABLE_TCP=ON ..
set CFLAGS=/WX /W4 /wd4127
set CXXFLAGS=/WX /W4 /wd4127
cmake -GNinja -DCMAKE_BUILD_TYPE=RelWithDebInfo -DLIBICSNEO_BUILD_UNIT_TESTS=ON -DLIBICSNEO_ENABLE_TCP=ON ..
if %errorlevel% neq 0 exit /b %errorlevel%
cmake --build .
if %errorlevel% neq 0 exit /b %errorlevel%
+4 -5
View File
@@ -37,29 +37,28 @@ bool Communication::open() {
}
void Communication::spawnThreads() {
closing = false;
readTaskThread = std::thread(&Communication::readTask, this);
}
void Communication::joinThreads() {
closing = true;
if(pauseReadTask) {
resumeReads();
}
closing = true;
if(readTaskThread.joinable())
readTaskThread.join();
closing = false;
}
bool Communication::close() {
joinThreads();
if(!isOpen() && !isDisconnected()) {
report(APIEvent::Type::DeviceCurrentlyClosed, APIEvent::Severity::Error);
return false;
}
joinThreads();
return driver->close();
}
+70
View File
@@ -0,0 +1,70 @@
/*
* crc32.c
*
* Created on: Jun 22, 2020
* Author: BJones
*/
#include "icsneo/communication/crc32.h"
#include <stddef.h>
static const unsigned long crc32_table[256] = { 0x00000000, 0x77073096, 0xEE0E612C, 0x990951BA, 0x076DC419, 0x706AF48F, 0xE963A535,
0x9E6495A3, 0x0EDB8832, 0x79DCB8A4, 0xE0D5E91E, 0x97D2D988, 0x09B64C2B, 0x7EB17CBD, 0xE7B82D07, 0x90BF1D91, 0x1DB71064, 0x6AB020F2,
0xF3B97148, 0x84BE41DE, 0x1ADAD47D, 0x6DDDE4EB, 0xF4D4B551, 0x83D385C7, 0x136C9856, 0x646BA8C0, 0xFD62F97A, 0x8A65C9EC, 0x14015C4F,
0x63066CD9, 0xFA0F3D63, 0x8D080DF5, 0x3B6E20C8, 0x4C69105E, 0xD56041E4, 0xA2677172, 0x3C03E4D1, 0x4B04D447, 0xD20D85FD, 0xA50AB56B,
0x35B5A8FA, 0x42B2986C, 0xDBBBC9D6, 0xACBCF940, 0x32D86CE3, 0x45DF5C75, 0xDCD60DCF, 0xABD13D59, 0x26D930AC, 0x51DE003A, 0xC8D75180,
0xBFD06116, 0x21B4F4B5, 0x56B3C423, 0xCFBA9599, 0xB8BDA50F, 0x2802B89E, 0x5F058808, 0xC60CD9B2, 0xB10BE924, 0x2F6F7C87, 0x58684C11,
0xC1611DAB, 0xB6662D3D, 0x76DC4190, 0x01DB7106, 0x98D220BC, 0xEFD5102A, 0x71B18589, 0x06B6B51F, 0x9FBFE4A5, 0xE8B8D433, 0x7807C9A2,
0x0F00F934, 0x9609A88E, 0xE10E9818, 0x7F6A0DBB, 0x086D3D2D, 0x91646C97, 0xE6635C01, 0x6B6B51F4, 0x1C6C6162, 0x856530D8, 0xF262004E,
0x6C0695ED, 0x1B01A57B, 0x8208F4C1, 0xF50FC457, 0x65B0D9C6, 0x12B7E950, 0x8BBEB8EA, 0xFCB9887C, 0x62DD1DDF, 0x15DA2D49, 0x8CD37CF3,
0xFBD44C65, 0x4DB26158, 0x3AB551CE, 0xA3BC0074, 0xD4BB30E2, 0x4ADFA541, 0x3DD895D7, 0xA4D1C46D, 0xD3D6F4FB, 0x4369E96A, 0x346ED9FC,
0xAD678846, 0xDA60B8D0, 0x44042D73, 0x33031DE5, 0xAA0A4C5F, 0xDD0D7CC9, 0x5005713C, 0x270241AA, 0xBE0B1010, 0xC90C2086, 0x5768B525,
0x206F85B3, 0xB966D409, 0xCE61E49F, 0x5EDEF90E, 0x29D9C998, 0xB0D09822, 0xC7D7A8B4, 0x59B33D17, 0x2EB40D81, 0xB7BD5C3B, 0xC0BA6CAD,
0xEDB88320, 0x9ABFB3B6, 0x03B6E20C, 0x74B1D29A, 0xEAD54739, 0x9DD277AF, 0x04DB2615, 0x73DC1683, 0xE3630B12, 0x94643B84, 0x0D6D6A3E,
0x7A6A5AA8, 0xE40ECF0B, 0x9309FF9D, 0x0A00AE27, 0x7D079EB1, 0xF00F9344, 0x8708A3D2, 0x1E01F268, 0x6906C2FE, 0xF762575D, 0x806567CB,
0x196C3671, 0x6E6B06E7, 0xFED41B76, 0x89D32BE0, 0x10DA7A5A, 0x67DD4ACC, 0xF9B9DF6F, 0x8EBEEFF9, 0x17B7BE43, 0x60B08ED5, 0xD6D6A3E8,
0xA1D1937E, 0x38D8C2C4, 0x4FDFF252, 0xD1BB67F1, 0xA6BC5767, 0x3FB506DD, 0x48B2364B, 0xD80D2BDA, 0xAF0A1B4C, 0x36034AF6, 0x41047A60,
0xDF60EFC3, 0xA867DF55, 0x316E8EEF, 0x4669BE79, 0xCB61B38C, 0xBC66831A, 0x256FD2A0, 0x5268E236, 0xCC0C7795, 0xBB0B4703, 0x220216B9,
0x5505262F, 0xC5BA3BBE, 0xB2BD0B28, 0x2BB45A92, 0x5CB36A04, 0xC2D7FFA7, 0xB5D0CF31, 0x2CD99E8B, 0x5BDEAE1D, 0x9B64C2B0, 0xEC63F226,
0x756AA39C, 0x026D930A, 0x9C0906A9, 0xEB0E363F, 0x72076785, 0x05005713, 0x95BF4A82, 0xE2B87A14, 0x7BB12BAE, 0x0CB61B38, 0x92D28E9B,
0xE5D5BE0D, 0x7CDCEFB7, 0x0BDBDF21, 0x86D3D2D4, 0xF1D4E242, 0x68DDB3F8, 0x1FDA836E, 0x81BE16CD, 0xF6B9265B, 0x6FB077E1, 0x18B74777,
0x88085AE6, 0xFF0F6A70, 0x66063BCA, 0x11010B5C, 0x8F659EFF, 0xF862AE69, 0x616BFFD3, 0x166CCF45, 0xA00AE278, 0xD70DD2EE, 0x4E048354,
0x3903B3C2, 0xA7672661, 0xD06016F7, 0x4969474D, 0x3E6E77DB, 0xAED16A4A, 0xD9D65ADC, 0x40DF0B66, 0x37D83BF0, 0xA9BCAE53, 0xDEBB9EC5,
0x47B2CF7F, 0x30B5FFE9, 0xBDBDF21C, 0xCABAC28A, 0x53B39330, 0x24B4A3A6, 0xBAD03605, 0xCDD70693, 0x54DE5729, 0x23D967BF, 0xB3667A2E,
0xC4614AB8, 0x5D681B02, 0x2A6F2B94, 0xB40BBE37, 0xC30C8EA1, 0x5A05DF1B, 0x2D02EF8D };
uint32_t crc32(uint32_t crc, const unsigned char* buf, uint32_t len)
{
unsigned char octet;
const unsigned char* p = buf;
crc = ~crc;
while (len--)
{
octet = *p++; /* Cast to unsigned octet. */
crc = (crc >> 8) ^ crc32_table[(crc & 0xff) ^ octet];
}
return ~crc;
}
static unsigned char rev_crc32_table[256];
static void revgen(void)
{
size_t k;
for (k = 0; k < 256; k++)
rev_crc32_table[crc32_table[k] >> 24] = (uint8_t)k;
}
uint32_t revcrc32(uint32_t crc, const unsigned char* buf, uint32_t len)
{
unsigned char k;
revgen();
crc = ~crc;
while (len--)
{
k = rev_crc32_table[crc >> 24];
crc = ((crc ^ crc32_table[k]) << 8) | (k ^ buf[len]);
}
return ~crc;
}
+15 -5
View File
@@ -16,6 +16,7 @@
#include "icsneo/communication/message/mdiomessage.h"
#include "icsneo/communication/message/extendeddatamessage.h"
#include "icsneo/communication/message/livedatamessage.h"
#include "icsneo/communication/message/logdatamessage.h"
#include "icsneo/communication/message/diskdatamessage.h"
#include "icsneo/communication/message/hardwareinfo.h"
#include "icsneo/communication/message/tc10statusmessage.h"
@@ -89,7 +90,7 @@ bool Decoder::decode(std::shared_ptr<Message>& result, const std::shared_ptr<Pac
result->timestamp *= timestampResolution;
switch(result->type) {
case Message::Type::BusMessage: {
case Message::Type::Frame: {
CANMessage& can = *static_cast<CANMessage*>(result.get());
can.network = packet->network;
break;
@@ -233,7 +234,7 @@ bool Decoder::decode(std::shared_ptr<Message>& result, const std::shared_ptr<Pac
// They come in as CAN but we will handle them in the device rather than
// passing them onto the user.
if(packet->data.size() < 24) {
auto rawmsg = std::make_shared<InternalMessage>(Network::NetID::Device);
auto rawmsg = std::make_shared<RawMessage>(Network::NetID::Device);
result = rawmsg;
rawmsg->data = packet->data;
return true;
@@ -263,7 +264,7 @@ bool Decoder::decode(std::shared_ptr<Message>& result, const std::shared_ptr<Pac
}
case Network::NetID::DeviceStatus: {
// Just pass along the data, the device needs to handle this itself
result = std::make_shared<InternalMessage>(packet->network, packet->data);
result = std::make_shared<RawMessage>(packet->network, packet->data);
return true;
}
case Network::NetID::RED_INT_MEMORYREAD: {
@@ -324,7 +325,7 @@ bool Decoder::decode(std::shared_ptr<Message>& result, const std::shared_ptr<Pac
return true;
}
default:
// No defined handler, treat this as a InternalMessage
// No defined handler, treat this as a RawMessage
break;
}
break;
@@ -491,7 +492,16 @@ bool Decoder::decode(std::shared_ptr<Message>& result, const std::shared_ptr<Pac
result = std::make_shared<DiskDataMessage>(std::move(packet->data));
return true;
}
case Network::NetID::Data_To_Host: {
result = LogDataMessage::DecodeToMessage(packet->data);
if(!result) {
report(APIEvent::Type::PacketDecodingError, APIEvent::Severity::EventWarning);
return false;
}
return true;
}
default:
break;
}
break;
@@ -499,6 +509,6 @@ bool Decoder::decode(std::shared_ptr<Message>& result, const std::shared_ptr<Pac
}
// For the moment other types of messages will automatically be decoded as raw messages
result = std::make_shared<InternalMessage>(packet->network, packet->data);
result = std::make_shared<RawMessage>(packet->network, packet->data);
return true;
}
+7 -5
View File
@@ -23,8 +23,8 @@ bool Encoder::encode(const Packetizer& packetizer, std::vector<uint8_t>& result,
result.clear();
switch(message->type) {
case Message::Type::BusMessage: {
auto frame = std::dynamic_pointer_cast<BusMessage>(message);
case Message::Type::Frame: {
auto frame = std::dynamic_pointer_cast<Frame>(message);
// Frame uses frame->data as the buffer unless directed otherwise
buffer = &frame->data;
@@ -130,8 +130,8 @@ bool Encoder::encode(const Packetizer& packetizer, std::vector<uint8_t>& result,
break;
}
case Message::Type::InternalMessage: {
auto raw = std::dynamic_pointer_cast<InternalMessage>(message);
case Message::Type::RawMessage: {
auto raw = std::dynamic_pointer_cast<RawMessage>(message);
// Raw message uses raw->data as the buffer unless directed otherwise
buffer = &raw->data;
@@ -243,7 +243,7 @@ bool Encoder::encode(const Packetizer& packetizer, std::vector<uint8_t>& result,
* In this case, command 0x06 is SetLEDState.
* This old command type is not really used anywhere else.
*/
auto canmsg = std::make_shared<InternalMessage>(Network::NetID::Device);
auto canmsg = std::make_shared<RawMessage>(Network::NetID::Device);
msg = canmsg;
if(arguments.empty()) {
report(APIEvent::Type::MessageFormattingError, APIEvent::Severity::Error);
@@ -265,6 +265,8 @@ bool Encoder::encode(const Packetizer& packetizer, std::vector<uint8_t>& result,
case Command::GetMainVersion:
case Command::GetSecondaryVersions:
case Command::NeoReadMemory:
case Command::ClearCoreMini:
case Command::LoadCoreMini:
// There is a firmware handling idiosyncrasy with these commands
// They must be encoded in the short format
m51msg->forceShortFormat = true;
+54
View File
@@ -18,5 +18,59 @@ double liveDataValueToDouble(const LiveDataValue& val) {
return val.value * liveDataFixedPointToDouble;
}
int liveDataDoubleToValue(LiveDataValue& value, const double& dFloat) {
union {
struct
{
uint32_t ValueFractionPart;
int32_t ValueInt32;
} parts;
int64_t ValueLarge;
} CminiFixedPt;
constexpr double CM_FIXED_POINT_TO_DOUBLEVALUE = (1.0 / (double)(1ULL << 32)); // 2^-32
constexpr double CM_DOUBLEVALUE_TO_FIXED_POINT = ((double)(1ULL << 32)); // 2^32
// Use const for limits (C++98 compatible)
const double INT32_MAX_DOUBLE =
static_cast<double>(std::numeric_limits<int32_t>::max()) + (1.0 - std::numeric_limits<double>::epsilon());
const double INT32_MIN_DOUBLE = static_cast<double>(std::numeric_limits<int32_t>::min());
const double MIN_FIXED_POINT_DOUBLE = (double)(1ull * CM_FIXED_POINT_TO_DOUBLEVALUE);
// This needs to be assigned separately, otherwise, for dFloat >= 2^31,
// long double dBigFloat = dFloat * CM_DOUBLEVALUE_TO_FIXED_POINT overflows
// long long (value is >= 2^63) and so the assignment ValueLarge = dBigFloat is undefined
int32_t intPart; //creating temp variable due to static analysis warning about writing and reading to different union members
if (dFloat < 0.0)
intPart = (int32_t)floor(dFloat);
else
intPart = (int32_t)dFloat;
//using temp varialbes to avoid static analysis warning about read/write to different union members
double frac = dFloat - (double)(intPart);
uint32_t fracPart = (uint32_t)floor((frac * CM_DOUBLEVALUE_TO_FIXED_POINT) + 0.5);
//write temp vars back into the union
CminiFixedPt.parts.ValueInt32 = intPart;
CminiFixedPt.parts.ValueFractionPart = fracPart;
value.value = CminiFixedPt.ValueLarge;
if (dFloat == (double)0.0)
return 0;
//check if double can be stored as 32.32
// 0x1 0000 0000 0000 0000 * CM_FIXED_POINT_TO_DOUBLEVALUE = 0x1 0000 0000
if (dFloat > INT32_MAX_DOUBLE)
return 1;
if (dFloat < INT32_MIN_DOUBLE)
return -1;
// Use absolute value for minimum fixed point check
double absFloat = (dFloat < 0.0) ? -dFloat : dFloat;
if (absFloat < MIN_FIXED_POINT_DOUBLE)
return -2;
return 0;
}
} // namespace LiveDataUtil
} // namespace icsneo
@@ -102,11 +102,11 @@ bool A2BWAVOutput::callIfMatch(const std::shared_ptr<Message>& message) const {
return false;
}
if(message->type != Message::Type::BusMessage) {
if(message->type != Message::Type::Frame) {
return false;
}
const auto& frameMsg = std::dynamic_pointer_cast<BusMessage>(message);
const auto& frameMsg = std::dynamic_pointer_cast<Frame>(message);
if(!frameMsg) {
return false;
@@ -14,10 +14,10 @@ enum LinkSpeed {
};
enum LinkMode {
OPETH_LINK_AUTO,
OPETH_LINK_MASTER,
OPETH_LINK_SLAVE,
OPETH_LINK_INVALID = 255,
AE_LINK_AUTO,
AE_LINK_MASTER,
AE_LINK_SLAVE,
AE_LINK_INVALID = 255,
};
struct Packet {
@@ -47,10 +47,10 @@ std::shared_ptr<Message> EthernetStatusMessage::DecodeToMessage(const std::vecto
}
LinkMode mode;
switch(packet->mode) {
case OPETH_LINK_INVALID: mode = EthernetStatusMessage::LinkMode::LinkModeInvalid; break;
case OPETH_LINK_AUTO: mode = EthernetStatusMessage::LinkMode::LinkModeAuto; break;
case OPETH_LINK_MASTER: mode = EthernetStatusMessage::LinkMode::LinkModeMaster; break;
case OPETH_LINK_SLAVE: mode = EthernetStatusMessage::LinkMode::LinkModeSlave; break;
case AE_LINK_INVALID: mode = EthernetStatusMessage::LinkMode::LinkModeInvalid; break;
case AE_LINK_AUTO: mode = EthernetStatusMessage::LinkMode::LinkModeAuto; break;
case AE_LINK_MASTER: mode = EthernetStatusMessage::LinkMode::LinkModeMaster; break;
case AE_LINK_SLAVE: mode = EthernetStatusMessage::LinkMode::LinkModeSlave; break;
default: return nullptr;
}
return std::make_shared<EthernetStatusMessage>(packet->network, packet->state, speed, packet->duplex, mode);
@@ -7,8 +7,7 @@
using namespace icsneo;
std::vector<uint8_t> FlexRayControlMessage::BuildBaseControlArgs(uint8_t controller, FlexRay::Opcode op, const std::vector<uint8_t>& args) {
std::vector<uint8_t> ret;
ret.reserve(args.size() + 4);
std::vector<uint8_t> ret(args.size() + 4);
ret.push_back(controller);
const uint16_t size = uint16_t((std::min)(args.size() + 1, size_t(std::numeric_limits<uint16_t>::max()))); // Add 1 for the opcode
ret.push_back(uint8_t(size));
+10
View File
@@ -12,4 +12,14 @@ void LiveDataCommandMessage::appendSignalArg(LiveDataValueType valueType) {
arg->valueType = valueType;
}
void LiveDataSetValueMessage::appendSetValue(LiveDataValueType valueType, const LiveDataValue& value) {
auto& arg = args.emplace_back(std::make_shared<LiveDataArgument>());
arg->objectType = LiveDataObjectType::MISC;
arg->objectIndex = 0u;
arg->signalIndex = 0u;
arg->valueType = valueType;
values.push_back(std::make_shared<LiveDataValue>(value));
}
} // namespace icsneo
+12
View File
@@ -0,0 +1,12 @@
#include "icsneo/communication/message/logdatamessage.h"
#include <iostream>
using namespace icsneo;
std::shared_ptr<LogDataMessage> LogDataMessage::DecodeToMessage(const std::vector<uint8_t>& bytestream) {
if(bytestream.size() % 2 != 0)
return nullptr;
const auto* begin = (char16_t*)bytestream.data();
const auto* end = begin + (bytestream.size() / sizeof(char16_t));
return std::make_shared<LogDataMessage>(std::wstring(begin,end));
}
+531
View File
@@ -0,0 +1,531 @@
#include "icsneo/communication/message/macsecmessage.h"
#include "icsneo/communication/crc32.h"
#include <memory>
#include <cstdint>
#include <iostream>
#include <cstring>
namespace icsneo
{
#ifdef _MSC_VER
#pragma warning(push)
#pragma warning(disable : 4201) // nameless struct/union
#endif
#pragma pack(push, 1)
/* MACsec Rule */
/**
* @brief Structure of Vlan tag
*
*/
typedef struct
{
uint16_t vid; /*!< 12 bits */
uint8_t priCfi; /*!< PRI - 3 bits, CFI - 1bit */
} MACSEC_VLANTAG_t;
/**
* @brief Structure of MPLS
*
*/
typedef struct
{
uint32_t mplsLabel; /*!< 20 bits */
uint8_t exp; /*!< 3 bits */
} MACSEC_MPLS_OUTER_t;
/**
* @brief Define Encoded Packet Type from the parser
*
*/
static constexpr int MACSEC_SETTINGS_RULE_SIZE = 88;
typedef union _MACSecRule
{
struct
{
uint8_t index;
uint8_t keyMacDa[6]; /*!< MAC DA field extracted from the packet */
uint8_t maskMacDa[6]; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
uint8_t keyMacSa[6]; /*!< MAC SA field extracted from the packet */
uint8_t maskMacSa[6]; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
uint16_t keyEthertype; /*!< First E-Type found in the packet that doesn't match one of the preconfigured custom tag. */
uint16_t maskEthertype; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
MACSEC_VLANTAG_t keyVlanTagOuter1; /*!< outermost/1st VLAN ID {8'd0, VLAN_ID[11:0]}, or 20-bit MPLS label. */
MACSEC_MPLS_OUTER_t keyMplsOuter1;
MACSEC_VLANTAG_t maskVlanTagOuter1; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
MACSEC_MPLS_OUTER_t maskMplsOuter1;
MACSEC_VLANTAG_t keyVlanTagOuter2; /*!< 2nd outermost VLAN ID {8'd0, VLAN_ID[11:0]}, or 20-bit MPLS label. */
MACSEC_MPLS_OUTER_t keyMplsOuter2;
MACSEC_VLANTAG_t maskVlanTagOuter2; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
MACSEC_MPLS_OUTER_t maskMplsOuter2;
uint16_t keyBonusData; /*!< 2 bytes of additional bonus data extracted from one of the custom tags. */
uint16_t maskBonusData; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
uint8_t
keyTagMatchBitmap; /*!< 8 bits total. Maps 1 to 1 bitwise with the set of custom tags. (set bit[N]=1 if check Nth custom tag) */
uint8_t maskTagMatchBitmap; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
uint8_t keyPacketType; /*!< Encoded Packet Type, see MACSEC_PACKET_TYPE */
uint8_t maskPacketType; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
uint16_t
keyInnerVlanType; /*!< 3 bits total. Encoded value indicating which VLAN TPID value matched for the second outermost VLAN Tag. */
uint16_t maskInnerVlanType; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
uint16_t keyOuterVlanType; /*!< 3 bits total. Encoded value indicating which VLAN TPID value matched for the outermost VLAN Tag. */
uint16_t maskOuterVlanType; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
uint8_t
keyNumTags; /*!< 7 bits total. Number of VLAN/custom tags or MPLS lables detected. Ingress: before SecTag; Egress: total detected. Exclude MCS header tags. i.e. Bit 2: 2 tags/labels before SecTAG...Bit 6: 6 or more tags/labels before SecTAG. */
uint8_t maskNumTags; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
uint8_t keyExpress; /*!< 1 bits. Express packet. */
uint8_t maskExpress; /*!< Set bits to 1 to mask/exclude corresponding flowid_tcam_data bit from compare */
uint8_t isMpls;
uint8_t rsvd[5];
uint8_t enable;
};
uint8_t byte[MACSEC_SETTINGS_RULE_SIZE];
} MACSecRule_t;
/* MACsec Map */
static constexpr int MACSEC_SETTINGS_MAP_SIZE = 20;
typedef union _MACSecMap
{
struct
{
uint8_t index;
uint64_t secTagSci; /*!< Identifies the SecTAG SCI for this Flow. */
uint8_t secYIndex; /*!< index for entry in Egress secY Policy */
uint8_t isControlPacket; /*!< Identifies all packets matching this index lookup as control packets. */
uint8_t scIndex; /*!< Identifies the SC for this Flow. */
uint8_t auxiliaryPlcy; /*!< Auxiliary policy bits. */
uint8_t ruleId; /*!< Identifies the Rule for this Flow. */
uint8_t rsvd[5];
uint8_t enable;
};
uint8_t byte[MACSEC_SETTINGS_MAP_SIZE];
} MACSecMap_t;
/* MACsec SecY */
/**
* @brief Define the permit police for frames as defined in 802.1ae
*
*/
static constexpr int MACSEC_SETTINGS_SECY_SIZE = 24;
typedef union _MACSecSecY
{
struct
{
uint8_t index; /*!< Identifies the SecY for this Flow. */
uint8_t controlledPortEnabled; /*!< Enable (or disable) operation of the Controlled port associated with this SecY */
uint8_t frameValidationType; /*!< see MACSEC_VALIDATEFRAME */
uint8_t secTagIcvStripType; /*!< see MACSEC_STRIP_SECTAG_ICV */
uint8_t cipher; /*!< Define the cipher suite to use for this SecY see MACSEC_CIPHER_SUITE */
uint8_t confidentialOffset; /*!< Define the number of bytes that are unencrypted following the SecTag. */
uint8_t icvIncludesDaSa; /*!< When set, the outer DA/SA bytes are included in the authentication GHASH calculation */
uint8_t replayProtect; /*!< Enables Anti-Replay protection */
uint32_t replayWindow; /*!< Unsigned value indicating the size of the anti-replay window. */
uint8_t
protectFrames; /*!< 0 = do not encrypt or authenticate this packet; 1 = always Authenticate frame and if SecTag.TCI.E = 1 encrypt the packet as well. */
uint8_t
secTagOffset; /*!< Define the offset in bytes from either the start of the packet or a matching Etype depending on SecTag_Insertion_Mode. */
uint8_t secTagTci; /*!< Tag Control Information excluding the AN field which originates from the SA Policy table */
uint16_t mtu; /*!< Specifies the outgoing MTU for this SecY */
uint8_t rsvd[6];
uint8_t enable;
};
uint8_t byte[MACSEC_SETTINGS_SECY_SIZE];
} MACSecSecY_t;
/* MACsec SC */
static constexpr int MACSEC_SETTINGS_SC_SIZE = 24;
typedef union _MACSecSc
{
struct
{
uint8_t index; /*!< SC index. */
uint8_t secYIndex; /*!< SecY associated with this packet. */
uint64_t sci; /*!< The Secure Channel Identifier. */
uint8_t saIndex0; /*!< Define the 1st SA to use */
uint8_t saIndex1; /*!< Define the 2nd SA to use */
uint8_t saIndex0InUse; /*!< Specifies whether 1st SA is in use or not. */
uint8_t saIndex1InUse; /*!< Specifies whether 2nd SA is in use or not. */
uint8_t enableAutoRekey; /*!< If enabled, then once the pn_threshold is reached, auto rekey will happen. */
uint8_t
isActiveSa1; /*!< If set, then sa_index1 is the currently active SA index. If cleared, the sa_index0 is the currently active SA index). */
uint8_t rsvd[7];
uint8_t enable;
};
uint8_t byte[MACSEC_SETTINGS_SC_SIZE];
} MACSecSc_t;
/* MACsec SA */
static constexpr int MACSEC_SETTINGS_SA_SIZE = 80;
typedef union _MACSecSa
{
struct
{
uint8_t index; /*!< SA index */
uint8_t
sak[32]; /*!< 256b SAK: Define the encryption key to be used to encrypte this packet. The lower 128 bits are used for 128-bit ciphers. */
uint8_t hashKey[16]; /*!< 128b Hash Key: Key used for authentication. */
uint8_t salt[12]; /*!< 96b Salt value: Salt value used in XPN ciphers. */
uint32_t ssci; /*!< 32b SSCI value: Short Secure Channel Identifier, used in XPN ciphers. */
uint8_t an; /*!< 2b SecTag Association Number (AN) */
uint64_t nextPn; /*!< 64b next_pn value: Next packet number to insert into outgoing packet on a particular SA. */
uint8_t rsvd[5];
uint8_t enable;
};
uint8_t byte[MACSEC_SETTINGS_SA_SIZE];
} MACSecSa_t;
/* MACsec Flags */
typedef union _MACSecFlags
{
struct
{
uint32_t en : 1; // '1' = enable; '0' = disable
uint32_t reserved : 31;
};
uint32_t flags_32b;
} MACSecFlags_t;
#define MACSEC_SETTINGS_FLAGS_SIZE (4)
/* MACSec Settings for 1 port/phy */
typedef struct MACSEC_CONFIG_t
{
MACSecFlags_t flags;
MACSecRule_t rule[MACsecConfig::NumRules];
MACSecMap_t map[MACsecConfig::NumMaps];
MACSecSecY_t secy[MACsecConfig::NumSecY];
MACSecSc_t sc[MACsecConfig::NumSc];
MACSecSa_t sa[MACsecConfig::NumSa];
} MACSEC_CONFIG;
typedef union _MACSecGlobalFlags
{
struct
{
uint32_t en : 1; // '1' = enable; '0' = disable
uint32_t nvm : 1; // store macsec config in non-volatile memory
uint32_t reserved : 30;
};
uint32_t flags_32b;
} MACSecGlobalFlags_t;
#define MACSEC_SETTINGS_SIZE (2040) // leave space for expansion and keep nicely aligned for flashing
typedef union _MACSEC_SETTINGS
{
struct
{
MACSecGlobalFlags_t flags;
MACSEC_CONFIG rx;
MACSEC_CONFIG tx;
};
uint8_t byte[MACSEC_SETTINGS_SIZE];
} MACSEC_SETTINGS;
#define MACSEC_SETTINGS_VERSION 1
struct MACSEC_SETTINGS_W_HDR
{
uint16_t version;
uint16_t len;
uint32_t crc32;
MACSEC_SETTINGS macsec;
};
#pragma pack(pop)
#ifdef _MSC_VER
#pragma warning(pop)
#endif
std::shared_ptr<MACsecMessage> MACsecMessage::DecodeToMessage(const std::vector<uint8_t>& bytestream, const device_eventhandler_t& report)
{
if (bytestream.empty() || (bytestream.size() < sizeof(MACSEC_SETTINGS_W_HDR)))
{
report(APIEvent::Type::RequiredParameterNull, APIEvent::Severity::Error);
return nullptr;
}
MACSEC_SETTINGS_W_HDR* macsecArgs = (MACSEC_SETTINGS_W_HDR*)bytestream.data();
if (macsecArgs->version != MACSEC_SETTINGS_VERSION)
{
report(APIEvent::Type::SettingsVersionError, APIEvent::Severity::Error);
return nullptr;
}
if (macsecArgs->len != sizeof(MACSEC_SETTINGS))
{
report(APIEvent::Type::SettingsLengthError, APIEvent::Severity::Error);
return nullptr;
}
const auto crcCalculted = crc32(0, (uint8_t*)&macsecArgs->macsec, macsecArgs->len);
if (macsecArgs->crc32 != crcCalculted)
{
report(APIEvent::Type::SettingsChecksumError, APIEvent::Severity::Error);
return nullptr;
}
auto msg = std::make_shared<MACsecMessage>();
const auto& copyConfig = [](const MACSEC_CONFIG& source, MACsecConfig& dest)
{
dest.flags.en = source.flags.en;
for (int index = 0; index < MACsecConfig::NumRules; index++)
{
if(!source.rule[index].enable) continue;
#undef __COPY_ITEM
#define __COPY_ITEM(___name__) dest.rule[index].___name__ = (decltype(dest.rule[index].___name__))source.rule[index].___name__
#undef __COPY_ARR
#define __COPY_ARR(___name__) (void)memcpy(dest.rule[index].___name__.data(), source.rule[index].___name__, dest.rule[index].___name__.size())
__COPY_ITEM(index);
__COPY_ARR(keyMacDa);
__COPY_ARR(maskMacDa);
__COPY_ARR(keyMacSa);
__COPY_ARR(maskMacSa);
__COPY_ITEM(keyVlanTagOuter1.vid);
__COPY_ITEM(keyVlanTagOuter1.priCfi);
__COPY_ITEM(keyMplsOuter1.mplsLabel);
__COPY_ITEM(keyMplsOuter1.exp);
__COPY_ITEM(maskVlanTagOuter1.vid);
__COPY_ITEM(maskVlanTagOuter1.priCfi);
__COPY_ITEM(maskMplsOuter1.mplsLabel);
__COPY_ITEM(maskMplsOuter1.exp);
__COPY_ITEM(keyVlanTagOuter2.vid);
__COPY_ITEM(keyVlanTagOuter2.priCfi);
__COPY_ITEM(keyMplsOuter2.mplsLabel);
__COPY_ITEM(keyMplsOuter2.exp);
__COPY_ITEM(maskVlanTagOuter2.vid);
__COPY_ITEM(maskVlanTagOuter2.priCfi);
__COPY_ITEM(maskMplsOuter2.mplsLabel);
__COPY_ITEM(maskMplsOuter2.exp);
__COPY_ITEM(keyEthertype);
__COPY_ITEM(maskEthertype);
__COPY_ITEM(keyBonusData);
__COPY_ITEM(maskBonusData);
__COPY_ITEM(keyTagMatchBitmap);
__COPY_ITEM(maskTagMatchBitmap);
__COPY_ITEM(keyPacketType);
__COPY_ITEM(maskPacketType);
__COPY_ITEM(keyInnerVlanType);
__COPY_ITEM(maskInnerVlanType);
__COPY_ITEM(keyOuterVlanType);
__COPY_ITEM(maskOuterVlanType);
__COPY_ITEM(keyNumTags);
__COPY_ITEM(maskNumTags);
__COPY_ITEM(keyExpress);
__COPY_ITEM(maskExpress);
__COPY_ITEM(isMpls);
__COPY_ITEM(enable);
}
for (int index = 0; index < MACsecConfig::NumMaps; index++)
{
if(!source.map[index].enable) continue;
#undef __COPY_ITEM
#define __COPY_ITEM(___name__) dest.map[index].___name__ = source.map[index].___name__
__COPY_ITEM(index);
__COPY_ITEM(secTagSci);
__COPY_ITEM(secYIndex);
__COPY_ITEM(isControlPacket);
__COPY_ITEM(scIndex);
__COPY_ITEM(auxiliaryPlcy);
__COPY_ITEM(ruleId);
__COPY_ITEM(enable);
}
for (int index = 0; index < MACsecConfig::NumSecY; index++)
{
if(!source.secy[index].enable) continue;
#undef __COPY_ITEM
#define __COPY_ITEM(___name__) dest.secy[index].___name__ = (decltype(dest.secy[index].___name__))source.secy[index].___name__
__COPY_ITEM(index);
__COPY_ITEM(controlledPortEnabled);
__COPY_ITEM(frameValidationType);
__COPY_ITEM(secTagIcvStripType);
__COPY_ITEM(cipher);
__COPY_ITEM(confidentialOffset);
__COPY_ITEM(icvIncludesDaSa);
__COPY_ITEM(replayProtect);
__COPY_ITEM(replayWindow);
__COPY_ITEM(protectFrames);
__COPY_ITEM(secTagOffset);
__COPY_ITEM(secTagTci);
__COPY_ITEM(mtu);
__COPY_ITEM(enable);
}
for (int index = 0; index < MACsecConfig::NumSc; index++)
{
if(!source.sc[index].enable) continue;
#undef __COPY_ITEM
#define __COPY_ITEM(___name__) dest.sc[index].___name__ = source.sc[index].___name__
__COPY_ITEM(index);
__COPY_ITEM(secYIndex);
__COPY_ITEM(sci);
__COPY_ITEM(saIndex0);
__COPY_ITEM(saIndex1);
__COPY_ITEM(saIndex0InUse);
__COPY_ITEM(saIndex1InUse);
__COPY_ITEM(enableAutoRekey);
__COPY_ITEM(isActiveSa1);
__COPY_ITEM(enable);
}
for (int index = 0; index < MACsecConfig::NumSa; index++)
{
if(!source.sa[index].enable) continue;
#undef __COPY_ITEM
#define __COPY_ITEM(___name__) dest.sa[index].___name__ = source.sa[index].___name__
#undef __COPY_ARR
#define __COPY_ARR(___name__) (void)memcpy(dest.sa[index].___name__.data(), source.sa[index].___name__, dest.sa[index].___name__.size())
__COPY_ITEM(index);
__COPY_ARR(sak);
__COPY_ARR(hashKey);
__COPY_ARR(salt);
__COPY_ITEM(ssci);
__COPY_ITEM(an);
__COPY_ITEM(nextPn);
__COPY_ITEM(enable);
}
};
msg->flags.en = macsecArgs->macsec.flags.en;
copyConfig(macsecArgs->macsec.rx, msg->rx);
copyConfig(macsecArgs->macsec.tx, msg->tx);
return msg;
}
bool MACsecMessage::EncodeFromMessage(std::vector<uint8_t>& bytestream, const device_eventhandler_t& report) const
{
MACSEC_SETTINGS_W_HDR* macsecArgs;
bytestream.resize(sizeof(MACSEC_SETTINGS_W_HDR), 0);
macsecArgs = (MACSEC_SETTINGS_W_HDR*)bytestream.data();
macsecArgs->version = MACSEC_SETTINGS_VERSION;
macsecArgs->len = sizeof(MACSEC_SETTINGS_W_HDR);
const auto& copyConfig = [](const MACsecConfig& source, MACSEC_CONFIG& dest)
{
dest.flags.en = (uint8_t)source.flags.en;
for (int index = 0; index < MACsecConfig::NumRules; index++)
{
if(!source.rule[index].enable) continue;
#undef __COPY_ITEM
#define __COPY_ITEM(___name__) dest.rule[index].___name__ = (decltype(dest.rule[index].___name__))source.rule[index].___name__
#undef __COPY_ARR
#define __COPY_ARR(___name__) (void)memcpy(dest.rule[index].___name__, source.rule[index].___name__.data(), source.rule[index].___name__.size())
__COPY_ITEM(index);
__COPY_ARR(keyMacDa);
__COPY_ARR(maskMacDa);
__COPY_ARR(keyMacSa);
__COPY_ARR(maskMacSa);
__COPY_ITEM(keyVlanTagOuter1.vid);
__COPY_ITEM(keyVlanTagOuter1.priCfi);
__COPY_ITEM(keyMplsOuter1.mplsLabel);
__COPY_ITEM(keyMplsOuter1.exp);
__COPY_ITEM(maskVlanTagOuter1.vid);
__COPY_ITEM(maskVlanTagOuter1.priCfi);
__COPY_ITEM(maskMplsOuter1.mplsLabel);
__COPY_ITEM(maskMplsOuter1.exp);
__COPY_ITEM(keyVlanTagOuter2.vid);
__COPY_ITEM(keyVlanTagOuter2.priCfi);
__COPY_ITEM(keyMplsOuter2.mplsLabel);
__COPY_ITEM(keyMplsOuter2.exp);
__COPY_ITEM(maskVlanTagOuter2.vid);
__COPY_ITEM(maskVlanTagOuter2.priCfi);
__COPY_ITEM(maskMplsOuter2.mplsLabel);
__COPY_ITEM(maskMplsOuter2.exp);
__COPY_ITEM(keyEthertype);
__COPY_ITEM(maskEthertype);
__COPY_ITEM(keyBonusData);
__COPY_ITEM(maskBonusData);
__COPY_ITEM(keyTagMatchBitmap);
__COPY_ITEM(maskTagMatchBitmap);
__COPY_ITEM(keyPacketType);
__COPY_ITEM(maskPacketType);
__COPY_ITEM(keyInnerVlanType);
__COPY_ITEM(maskInnerVlanType);
__COPY_ITEM(keyOuterVlanType);
__COPY_ITEM(maskOuterVlanType);
__COPY_ITEM(keyNumTags);
__COPY_ITEM(maskNumTags);
__COPY_ITEM(keyExpress);
__COPY_ITEM(maskExpress);
__COPY_ITEM(isMpls);
__COPY_ITEM(enable);
}
for (int index = 0; index < MACsecConfig::NumMaps; index++)
{
if(!source.map[index].enable) continue;
#undef __COPY_ITEM
#define __COPY_ITEM(___name__) dest.map[index].___name__ = source.map[index].___name__
__COPY_ITEM(index);
__COPY_ITEM(secTagSci);
__COPY_ITEM(secYIndex);
__COPY_ITEM(isControlPacket);
__COPY_ITEM(scIndex);
__COPY_ITEM(auxiliaryPlcy);
__COPY_ITEM(ruleId);
__COPY_ITEM(enable);
}
for (int index = 0; index < MACsecConfig::NumSecY; index++)
{
if(!source.secy[index].enable) continue;
#undef __COPY_ITEM
#define __COPY_ITEM(___name__) dest.secy[index].___name__ = (decltype(dest.secy[index].___name__))source.secy[index].___name__
__COPY_ITEM(index);
__COPY_ITEM(controlledPortEnabled);
__COPY_ITEM(frameValidationType);
__COPY_ITEM(secTagIcvStripType);
__COPY_ITEM(cipher);
__COPY_ITEM(confidentialOffset);
__COPY_ITEM(icvIncludesDaSa);
__COPY_ITEM(replayProtect);
__COPY_ITEM(replayWindow);
__COPY_ITEM(protectFrames);
__COPY_ITEM(secTagOffset);
__COPY_ITEM(secTagTci);
__COPY_ITEM(mtu);
__COPY_ITEM(enable);
}
for (int index = 0; index < MACsecConfig::NumSc; index++)
{
if(!source.sc[index].enable) continue;
#undef __COPY_ITEM
#define __COPY_ITEM(___name__) dest.sc[index].___name__ = source.sc[index].___name__
__COPY_ITEM(index);
__COPY_ITEM(secYIndex);
__COPY_ITEM(sci);
__COPY_ITEM(saIndex0);
__COPY_ITEM(saIndex1);
__COPY_ITEM(saIndex0InUse);
__COPY_ITEM(saIndex1InUse);
__COPY_ITEM(enableAutoRekey);
__COPY_ITEM(isActiveSa1);
__COPY_ITEM(enable);
}
for (int index = 0; index < MACsecConfig::NumSa; index++)
{
if(!source.sa[index].enable) continue;
#undef __COPY_ITEM
#define __COPY_ITEM(___name__) dest.sa[index].___name__ = source.sa[index].___name__
#undef __COPY_ARR
#define __COPY_ARR(___name__) (void)memcpy(dest.sa[index].___name__, source.sa[index].___name__.data(), source.sa[index].___name__.size())
__COPY_ITEM(index);
__COPY_ARR(sak);
__COPY_ARR(hashKey);
__COPY_ARR(salt);
__COPY_ITEM(ssci);
__COPY_ITEM(an);
__COPY_ITEM(nextPn);
__COPY_ITEM(enable);
}
};
macsecArgs->macsec.flags.en = this->flags.en;
macsecArgs->macsec.flags.nvm = this->flags.nvm;
copyConfig(this->rx, macsecArgs->macsec.rx);
copyConfig(this->tx, macsecArgs->macsec.tx);
macsecArgs->crc32 = crc32(0, (uint8_t*)&macsecArgs->macsec, sizeof(MACSEC_SETTINGS));
(void)report;
return true;
}
} // namespace icsneo
+12 -10
View File
@@ -14,9 +14,9 @@ neomessage_t icsneo::CreateNeoMessage(const std::shared_ptr<Message> message) {
neomsg.timestamp = message->timestamp;
switch (message->type)
{
case Message::Type::BusMessage: {
case Message::Type::Frame: {
neomessage_frame_t& frame = *(neomessage_frame_t*)&neomsg;
auto framemsg = std::static_pointer_cast<BusMessage>(message);
auto framemsg = std::static_pointer_cast<Frame>(message);
const auto netType = framemsg->network.getType();
frame.netid = (neonetid_t)framemsg->network.getNetID();
@@ -75,13 +75,15 @@ neomessage_t icsneo::CreateNeoMessage(const std::shared_ptr<Message> message) {
lin.length = 1;
lin.linStatus = {
linmsg->statusFlags.TxChecksumEnhanced,
linmsg->statusFlags.TxCommander,
linmsg->statusFlags.TxResponder,
linmsg->statusFlags.UpdateResponderOnce,
linmsg->statusFlags.HasUpdatedResponderOnce,
linmsg->statusFlags.BusRecovered,
linmsg->statusFlags.BreakOnly
linmsg->statusFlags.TxChecksumEnhanced, // .txChecksumEnhanced
linmsg->statusFlags.TxCommander, // .txCommander
linmsg->statusFlags.TxResponder, // .txResponder
0, // .txAborted
linmsg->statusFlags.UpdateResponderOnce, // .updateResponderOnce
linmsg->statusFlags.HasUpdatedResponderOnce, // .hasUpdatedResponderOnce
linmsg->statusFlags.BusRecovered, // .busRecovered
linmsg->statusFlags.BreakOnly // .breakOnly
};
lin.status.linJustBreakSync = linmsg->errFlags.ErrRxBreakSyncOnly;
@@ -120,7 +122,7 @@ neomessage_t icsneo::CreateNeoMessage(const std::shared_ptr<Message> message) {
std::shared_ptr<Message> icsneo::CreateMessageFromNeoMessage(const neomessage_t* neomessage) {
switch((Message::Type)neomessage->messageType) {
case Message::Type::BusMessage: {
case Message::Type::Frame: {
const Network network = ((neomessage_frame_t*)neomessage)->netid;
switch(network.getType()) {
case Network::Type::CAN:
+2 -2
View File
@@ -3,7 +3,7 @@
using namespace icsneo;
std::optional<uint8_t> icsneo::CAN_DLCToLength(uint8_t length, bool fd) {
static std::optional<uint8_t> CAN_DLCToLength(uint8_t length, bool fd) {
if (length <= 8)
return length;
@@ -29,7 +29,7 @@ std::optional<uint8_t> icsneo::CAN_DLCToLength(uint8_t length, bool fd) {
return std::nullopt;
}
std::optional<uint8_t> icsneo::CAN_LengthToDLC(size_t dataLength, bool fd)
static std::optional<uint8_t> CAN_LengthToDLC(size_t dataLength, bool fd)
{
if (dataLength <= 8)
return uint8_t(dataLength);
@@ -31,7 +31,7 @@ std::shared_ptr<ComponentVersionsMessage> ComponentVersionPacket::DecodeToMessag
// Get a reference to the payload to fully validate the length
const auto& response = *reinterpret_cast<const ComponentVersionsResponse*>(bytes.data());
// Expected size is the header, numVersions field, and numVersions ComponentVersion objects.
auto expectedSize = sizeof(ExtendedResponseMessage::ResponseHeader) + 2 + (response.numVersions * sizeof(ComponentVersion));
auto expectedSize = sizeof(ExtendedResponseMessage::ResponseHeader) + 2 + (response.numVersions * sizeof(PackedComponentVersion));
// If the response is malformed (too small), return an empty message.
if(bytes.size() < expectedSize) {
return msg; // Empty
@@ -39,7 +39,14 @@ std::shared_ptr<ComponentVersionsMessage> ComponentVersionPacket::DecodeToMessag
// Unpack into the portable class
for(unsigned int i = 0; i < response.numVersions; ++i) {
const auto& packedVersion = response.versions[i];
msg->versions.emplace_back(packedVersion.valid, packedVersion.componentInfo, packedVersion.identifier, packedVersion.dotVersion, packedVersion.commitHash);
msg->versions.emplace_back(
packedVersion.valid,
packedVersion.componentInfo,
packedVersion.identifier,
packedVersion.dotVersion,
packedVersion.commitHash,
packedVersion.expansionSlot
);
}
return msg;
}
+1 -1
View File
@@ -31,7 +31,7 @@ std::shared_ptr<Message> HardwareLINPacket::DecodeToMessage(const std::vector<ui
auto isChecksumInvalid = [&]() -> bool {
/* messages with no data have no checksum (e.g. header only) */
if(!msg->data.size())
return true;
return false;
uint8_t checkSum = (8 > numDataBytes) ? *(dataStart + numDataBytes) : packet->CoreMiniBitsLIN.LINByte9;
LINMessage::calcChecksum(*msg);
+27
View File
@@ -99,6 +99,33 @@ bool HardwareLiveDataPacket::EncodeFromMessage(LiveDataMessage& message, std::ve
clearMsg->cmd = static_cast<uint32_t>(message.cmd);
break;
}
case LiveDataCommand::SET_VALUE: {
auto setValMsg = reinterpret_cast<LiveDataSetValueMessage*>(&message);
const auto numArgs = setValMsg->args.size();
if(numArgs) {
payloadSize = static_cast<uint16_t>(sizeof(LiveDataSetValue) + (sizeof(LiveDataSetValueEntry) * (numArgs-1)));
bytestream.resize((payloadSize + sizeof(ExtendedCommandHeader)),0);
LiveDataSetValue* out = reinterpret_cast<LiveDataSetValue*>(bytestream.data() + sizeof(ExtendedCommandHeader));
out->version = icsneo::LiveDataUtil::LiveDataVersion;
out->cmd = static_cast<uint32_t>(setValMsg->cmd);
if(!setValMsg->handle)
setValMsg->handle = LiveDataUtil::getNewHandle();
out->handle = setValMsg->handle;
out->numArgs = static_cast<uint32_t>(setValMsg->args.size());
for(size_t i = 0; i < numArgs; ++i) {
out->values[i].arg.objectType = setValMsg->args[i]->objectType;
out->values[i].arg.objectIndex = setValMsg->args[i]->objectIndex;
out->values[i].arg.signalIndex = setValMsg->args[i]->signalIndex;
out->values[i].arg.valueType = setValMsg->args[i]->valueType;
out->values[i].value.value = setValMsg->values[i]->value;
out->values[i].value.header.length = sizeof(int64_t);
}
} else {
report(APIEvent::Type::LiveDataInvalidArgument, APIEvent::Severity::Error);
return false;
}
break;
}
default: {
report(APIEvent::Type::LiveDataInvalidCommand, APIEvent::Severity::Error);
return false;
+175 -57
View File
@@ -88,6 +88,10 @@ Device::~Device() {
disableMessagePolling();
if(isOpen())
close();
if(heartbeatThread.joinable()) {
stopHeartbeatThread = true;
heartbeatThread.join();
}
}
uint16_t Device::getTimestampResolution() const {
@@ -130,6 +134,18 @@ std::pair<std::vector<std::shared_ptr<Message>>, bool> Device::getMessages() {
return std::make_pair(ret, retBool);
}
std::shared_ptr<DeviceExtension> Device::getExtension(const std::string& name) const {
std::shared_ptr<DeviceExtension> ret;
std::lock_guard<std::mutex> lk(extensionsLock);
for(auto& ext : extensions) {
if((ext->getName() == name)) {
ret = ext;
break;
}
}
return ret;
}
bool Device::getMessages(std::vector<std::shared_ptr<Message>>& container, size_t limit, std::chrono::milliseconds timeout) {
if(!isOpen()) {
report(APIEvent::Type::DeviceCurrentlyClosed, APIEvent::Severity::Error);
@@ -176,6 +192,14 @@ void Device::enforcePollingMessageLimit() {
}
}
bool Device::refreshComponentVersions() {
if(auto compVersions = com->getComponentVersionsSync()) {
componentVersions = std::move(*compVersions);
return true;
}
return false;
}
bool Device::open(OpenFlags flags, OpenStatusHandler handler) {
if(!com) {
report(APIEvent::Type::Unknown, APIEvent::Severity::Error);
@@ -195,6 +219,7 @@ bool Device::open(OpenFlags flags, OpenStatusHandler handler) {
tryAgain = true;
return true;
});
if(!tryAgain) {
com->close();
report(attemptErr, APIEvent::Severity::Error);
@@ -218,15 +243,7 @@ bool Device::open(OpenFlags flags, OpenStatusHandler handler) {
if(block) // Extensions say no
return false;
// Get component versions again *after* the extension "onDeviceOpen" hooks (e.g. device reflashes)
if(supportsComponentVersions()) {
if(auto compVersions = com->getComponentVersionsSync())
componentVersions = std::move(*compVersions);
else
// It's possible the device is on older firmware so don't return false here
report(APIEvent::Type::NoDeviceResponse, APIEvent::Severity::EventWarning);
}
refreshComponentVersions();
if(!settings->disabled) {
// Since we will not fail the open if a settings read fails,
// downgrade any errors to warnings. Otherwise the error will
@@ -245,6 +262,12 @@ bool Device::open(OpenFlags flags, OpenStatusHandler handler) {
handleInternalMessage(message);
}));
// Clear the previous heartbeat thread, in case open() was called on this instance more than once
if(heartbeatThread.joinable())
heartbeatThread.join();
stopHeartbeatThread = false;
heartbeatThread = std::thread([this]() {
EventManager::GetInstance().downgradeErrorsOnCurrentThread();
@@ -270,12 +293,12 @@ bool Device::open(OpenFlags flags, OpenStatusHandler handler) {
}
while(!stopHeartbeatThread) {
// Wait for 110ms for a possible heartbeat
std::this_thread::sleep_for(std::chrono::milliseconds(110));
std::unique_lock<std::mutex> recvLk(receivedMessageMutex);
if(receivedMessage) {
// Wait for 110ms for a possible heartbeat
if(heartbeatCV.wait_for(recvLk, std::chrono::milliseconds(110), [&]() { return receivedMessage; })) {
receivedMessage = false;
} else {
} else if(!stopHeartbeatThread) { // Add this condition here in case the thread was stopped while waiting for the last message
// Some communication, such as the bootloader and extractor interfaces, must
// redirect the input stream from the device as it will no longer be in the
// packet format we expect here. As a result, status updates will not reach
@@ -284,9 +307,8 @@ bool Device::open(OpenFlags flags, OpenStatusHandler handler) {
// otherwise quiet stream. This lock makes sure suppressDisconnects() will
// block until we've either gotten our status update or disconnected from
// the device.
std::lock_guard<std::mutex> lk(heartbeatMutex);
if(heartbeatSuppressed())
continue;
std::unique_lock<std::mutex> lk(heartbeatMutex);
if(heartbeatSuppressed()) continue;
// No heartbeat received, request a status
com->sendCommand(Command::RequestStatusUpdate);
@@ -296,8 +318,8 @@ bool Device::open(OpenFlags flags, OpenStatusHandler handler) {
receivedMessage = false;
} else {
if(!stopHeartbeatThread && !isDisconnected()) {
close();
report(APIEvent::Type::DeviceDisconnected, APIEvent::Severity::Error);
com->driver->close();
}
break;
}
@@ -323,7 +345,7 @@ APIEvent::Type Device::attemptToBeginCommunication() {
return getCommunicationNotEstablishedError();
}
if(!com->sendCommand(Command::EnableNetworkCommunication, false))
if(!enableNetworkCommunication(false))
return getCommunicationNotEstablishedError();
std::this_thread::sleep_for(std::chrono::milliseconds(10));
@@ -334,6 +356,7 @@ APIEvent::Type Device::attemptToBeginCommunication() {
if(i++ > 5)
break;
}
if(!serial) // "Communication could not be established with the device. Perhaps it is not powered with 12 volts?"
return getCommunicationNotEstablishedError();
@@ -347,13 +370,12 @@ APIEvent::Type Device::attemptToBeginCommunication() {
else
versions = std::move(*maybeVersions);
// Get component versions before the extension "onDeviceOpen" hooks so that we can properly check verisons
if(supportsComponentVersions()) {
if(auto compVersions = com->getComponentVersionsSync())
componentVersions = std::move(*compVersions);
else
return getCommunicationNotEstablishedError();
report(APIEvent::Type::NotSupported, APIEvent::Severity::EventWarning); // outdated firmware
}
return APIEvent::Type::NoErrorFound;
@@ -379,16 +401,20 @@ bool Device::close() {
internalHandlerCallbackID = 0;
if(heartbeatThread.joinable())
heartbeatThread.join();
stopHeartbeatThread = false;
forEachExtension([](const std::shared_ptr<DeviceExtension>& ext) { ext->onDeviceClose(); return true; });
return com->close();
}
bool Device::enableLogData() {
return com->sendCommand(Command::EnableLogData, true);
}
bool Device::disableLogData() {
return com->sendCommand(Command::EnableLogData, false);
}
bool Device::goOnline() {
if(!com->sendCommand(Command::EnableNetworkCommunication, true))
if(!enableNetworkCommunication(true))
return false;
auto startTime = std::chrono::system_clock::now();
@@ -431,29 +457,13 @@ bool Device::goOffline() {
return true;
}
if(!com->sendCommand(Command::EnableNetworkCommunication, false))
if(!enableNetworkCommunication(false))
return false;
auto startTime = std::chrono::system_clock::now();
ledState = (latestResetStatus && latestResetStatus->cmRunning) ? LEDState::CoreMiniRunning : LEDState::Offline;
updateLEDState();
std::shared_ptr<MessageFilter> filter = std::make_shared<MessageFilter>(Network::NetID::Reset_Status);
filter->includeInternalInAny = true;
// Wait until communication is disabled or 5 seconds, whichever comes first
while((std::chrono::system_clock::now() - startTime) < std::chrono::seconds(5)) {
if(latestResetStatus && !latestResetStatus->comEnabled)
break;
if(!com->sendCommand(Command::RequestStatusUpdate))
return false;
com->waitForMessageSync(filter, std::chrono::milliseconds(100));
}
online = false;
return true;
@@ -480,7 +490,7 @@ int8_t Device::prepareScriptLoad() {
return false;
}
const auto resp = std::static_pointer_cast<InternalMessage>(generic);
const auto resp = std::static_pointer_cast<RawMessage>(generic);
retVal = (int8_t)resp->data[0];
}
@@ -743,7 +753,7 @@ std::optional<CoreminiHeader> Device::readCoreminiHeader(Disk::MemoryType memTyp
return ret;
}
bool Device::transmit(std::shared_ptr<BusMessage> frame) {
bool Device::transmit(std::shared_ptr<Frame> frame) {
if(!isOpen()) {
report(APIEvent::Type::DeviceCurrentlyClosed, APIEvent::Severity::Error);
return false;
@@ -776,7 +786,7 @@ bool Device::transmit(std::shared_ptr<BusMessage> frame) {
return com->sendPacket(packet);
}
bool Device::transmit(std::vector<std::shared_ptr<BusMessage>> frames) {
bool Device::transmit(std::vector<std::shared_ptr<Frame>> frames) {
for(auto& frame : frames) {
if(!transmit(frame))
return false;
@@ -814,7 +824,6 @@ std::shared_ptr<HardwareInfo> Device::getHardwareInfo(std::chrono::milliseconds
report(APIEvent::Type::DeviceCurrentlyClosed, APIEvent::Severity::Error);
return nullptr;
}
auto filter = std::make_shared<MessageFilter>(Message::Type::HardwareInfo);
auto response = com->waitForMessageSync([this]() {
@@ -1694,7 +1703,10 @@ void Device::stopScriptStatusThreadIfNecessary(std::unique_lock<std::mutex> lk)
Lifetime Device::suppressDisconnects() {
std::lock_guard<std::mutex> lk(heartbeatMutex);
heartbeatSuppressedByUser++;
return Lifetime([this] { std::lock_guard<std::mutex> lk2(heartbeatMutex); heartbeatSuppressedByUser--; });
return Lifetime([this] {
std::lock_guard<std::mutex> lk2(heartbeatMutex);
heartbeatSuppressedByUser--;
});
}
void Device::addExtension(std::shared_ptr<DeviceExtension>&& extension) {
@@ -1721,8 +1733,8 @@ void Device::handleInternalMessage(std::shared_ptr<Message> message) {
case Message::Type::ResetStatus:
latestResetStatus = std::static_pointer_cast<ResetStatusMessage>(message);
break;
case Message::Type::InternalMessage: {
auto rawMessage = std::static_pointer_cast<InternalMessage>(message);
case Message::Type::RawMessage: {
auto rawMessage = std::static_pointer_cast<RawMessage>(message);
switch(rawMessage->network.getNetID()) {
case Network::NetID::DeviceStatus:
// Device Status format is unique per device, so the devices need to decode it themselves
@@ -1733,8 +1745,8 @@ void Device::handleInternalMessage(std::shared_ptr<Message> message) {
}
break;
}
case Message::Type::BusMessage: {
// Device is not guaranteed to be a CANMessage, it might be a InternalMessage
case Message::Type::Frame: {
// Device is not guaranteed to be a CANMessage, it might be a RawMessage
// if it couldn't be decoded to a CANMessage. We only care about the
// CANMessage decoding right now.
auto canmsg = std::dynamic_pointer_cast<CANMessage>(message);
@@ -1898,7 +1910,7 @@ std::optional<std::chrono::time_point<std::chrono::system_clock>> Device::getRTC
if(!generic) // Did not receive a message
return std::nullopt;
auto rawMes = std::dynamic_pointer_cast<InternalMessage>(generic);
auto rawMes = std::dynamic_pointer_cast<RawMessage>(generic);
if(!rawMes)
return std::nullopt;
@@ -1987,11 +1999,6 @@ std::optional<size_t> Device::getGenericBinarySize(uint16_t binaryIndex) {
return std::nullopt;
}
if(!isOnline()) {
report(APIEvent::Type::DeviceCurrentlyOffline, APIEvent::Severity::Error);
return std::nullopt;
}
std::vector<uint8_t> args = GenericBinaryStatusPacket::EncodeArguments(binaryIndex);
std::shared_ptr<Message> response = com->waitForMessageSync(
@@ -2054,6 +2061,40 @@ bool Device::readBinaryFile(std::ostream& stream, uint16_t binaryIndex) {
return true;
}
bool Device::writeBinaryFile(const std::vector<uint8_t>& in, uint16_t binaryIndex)
{
auto timeout = std::chrono::milliseconds(100);
auto size = in.size();
std::vector<uint8_t> arguments(sizeof(ExtendedDataMessage::ExtendedDataHeader) + ExtendedDataMessage::MaxExtendedDataBufferSize);
ExtendedDataMessage::ExtendedDataHeader& parameters = *reinterpret_cast<ExtendedDataMessage::ExtendedDataHeader*>(arguments.data());
auto filter = std::make_shared<MessageFilter>(Network::NetID::ExtendedData);
for (size_t offset = 0; offset < size; offset += ExtendedDataMessage::MaxExtendedDataBufferSize)
{
parameters.subCommand = ExtendedDataSubCommand::GenericBinaryWrite;
parameters.userValue = static_cast<uint32_t>(binaryIndex);
parameters.offset = static_cast<uint32_t>(offset);
parameters.length = static_cast<uint32_t>(std::min(ExtendedDataMessage::MaxExtendedDataBufferSize, size - offset));
(void)memcpy(&arguments[sizeof(ExtendedDataMessage::ExtendedDataHeader)], &in[offset], parameters.length);
std::shared_ptr<Message> response = com->waitForMessageSync(
[this, arguments]() {
return com->sendCommand(Command::ExtendedData, arguments);
},
filter,
timeout
);
if (!response) {
report(APIEvent::Type::NoDeviceResponse, APIEvent::Severity::Error);
return false;
}
}
return true;
}
bool Device::subscribeLiveData(std::shared_ptr<LiveDataCommandMessage> message) {
if(!supportsLiveData()) {
report(APIEvent::Type::LiveDataNotSupported, APIEvent::Severity::Error);
@@ -2194,6 +2235,61 @@ bool Device::clearAllLiveData() {
return true;
}
bool Device::setValueLiveData(std::shared_ptr<LiveDataSetValueMessage> message) {
if(!supportsLiveData()) {
report(APIEvent::Type::LiveDataNotSupported, APIEvent::Severity::Error);
return false;
}
if(!isOpen()) {
report(APIEvent::Type::DeviceCurrentlyClosed, APIEvent::Severity::Error);
return false;
}
if((message->args.size() != message->values.size()) || message->args.empty()) {
report(APIEvent::Type::LiveDataInvalidArgument, APIEvent::Severity::Error);
return false;
}
std::vector<uint8_t> bytes;
if(!com->encoder->encode(*com->packetizer, bytes, message)) {
report(APIEvent::Type::LiveDataEncoderError, APIEvent::Severity::Error);
return false;
}
std::shared_ptr<Message> response = com->waitForMessageSync(
[this, &bytes](){ return com->sendPacket(bytes); },
std::make_shared<MessageFilter>(Message::Type::LiveData));
if(response) {
auto statusMsg = std::dynamic_pointer_cast<LiveDataStatusMessage>(response);
if(statusMsg && statusMsg->requestedCommand == message->cmd) {
switch(statusMsg->status) {
case LiveDataStatus::SUCCESS:
return true;
case LiveDataStatus::ERR_DUPLICATE:
case LiveDataStatus::ERR_HANDLE:
{
report(APIEvent::Type::LiveDataInvalidHandle, APIEvent::Severity::Error);
return false;
}
case LiveDataStatus::ERR_FULL:
{
report(APIEvent::Type::LiveDataMaxSignalsReached, APIEvent::Severity::Error);
return false;
}
case LiveDataStatus::ERR_UNKNOWN_COMMAND:
{
report(APIEvent::Type::LiveDataCommandFailed, APIEvent::Severity::Error);
return false;
}
default:
break;
}
}
}
report(APIEvent::Type::LiveDataNoDeviceResponse, APIEvent::Severity::Error);
return false;
}
bool Device::readVSA(const VSAExtractionSettings& extractionSettings) {
if(isOnline()) {
goOffline();
@@ -3369,3 +3465,25 @@ std::optional<GPTPStatus> Device::getGPTPStatus(std::chrono::milliseconds timeou
return *retMsg;
}
bool Device::writeMACsecConfig(const MACsecMessage& message, uint16_t binaryIndex)
{
std::vector<uint8_t> raw;
message.EncodeFromMessage(raw, report);
return writeBinaryFile(raw, binaryIndex);
}
bool Device::enableNetworkCommunication(bool enable) {
bool sendMsg = false;
if(!com->driver->enableCommunication(enable, sendMsg)) {
return false;
}
if(sendMsg) {
if(!com->sendCommand(Command::EnableNetworkCommunication, enable)) {
return false;
}
}
return true;
}
+36 -23
View File
@@ -2,6 +2,7 @@
#include "icsneo/platform/devices.h"
#include "icsneo/device/founddevice.h"
#include "generated/extensions/builtin.h"
#include "icsneo/platform/servd.h"
#ifdef ICSNEO_ENABLE_FIRMIO
#include "icsneo/platform/firmio.h"
@@ -63,29 +64,33 @@ std::vector<std::shared_ptr<Device>> DeviceFinder::FindAll() {
static std::vector<FoundDevice> newDriverFoundDevices;
newDriverFoundDevices.clear();
#ifdef ICSNEO_ENABLE_FIRMIO
FirmIO::Find(newDriverFoundDevices);
#endif
#ifdef ICSNEO_ENABLE_TCP
TCP::Find(newDriverFoundDevices);
#endif
#ifdef ICSNEO_ENABLE_RAW_ETHERNET
PCAP::Find(newDriverFoundDevices);
#endif
#ifdef ICSNEO_ENABLE_CDCACM
CDCACM::Find(newDriverFoundDevices);
#endif
#ifdef ICSNEO_ENABLE_FTDI
FTDI::Find(newDriverFoundDevices);
#endif
#ifdef ICSNEO_ENABLE_FTD3XX
FTD3XX::Find(newDriverFoundDevices);
#endif
if(Servd::Enabled()) {
Servd::Find(newDriverFoundDevices);
} else {
#ifdef ICSNEO_ENABLE_FIRMIO
FirmIO::Find(newDriverFoundDevices);
#endif
#ifdef ICSNEO_ENABLE_TCP
TCP::Find(newDriverFoundDevices);
#endif
#ifdef ICSNEO_ENABLE_RAW_ETHERNET
PCAP::Find(newDriverFoundDevices);
#endif
#ifdef ICSNEO_ENABLE_CDCACM
CDCACM::Find(newDriverFoundDevices);
#endif
#ifdef ICSNEO_ENABLE_FTDI
FTDI::Find(newDriverFoundDevices);
#endif
#ifdef ICSNEO_ENABLE_FTD3XX
FTD3XX::Find(newDriverFoundDevices);
#endif
}
// Weak because we don't want to keep devices open if they go out of scope elsewhere
static std::vector<std::weak_ptr<Device>> foundDevices;
@@ -193,6 +198,10 @@ std::vector<std::shared_ptr<Device>> DeviceFinder::FindAll() {
makeIfSerialMatches<RADEpsilon>(dev, newFoundDevices);
#endif
#ifdef __RADEPSILONXL_H_
makeIfSerialMatches<RADEpsilonXL>(dev, newFoundDevices);
#endif
#ifdef __RADGALAXY_H_
makeIfSerialMatches<RADGalaxy>(dev, newFoundDevices);
#endif
@@ -352,6 +361,10 @@ const std::vector<DeviceType>& DeviceFinder::GetSupportedDevices() {
RADEpsilon::DEVICE_TYPE,
#endif
#ifdef __RADEPSILONXL_H_
RADEpsilonXL::DEVICE_TYPE,
#endif
#ifdef __RADGALAXY_H_
RADGalaxy::DEVICE_TYPE,
#endif
+1 -1
View File
@@ -45,7 +45,7 @@ void FlexRay::Extension::handleMessage(const std::shared_ptr<Message>& message)
}
}
bool FlexRay::Extension::transmitHook(const std::shared_ptr<BusMessage>& frame, bool& success) {
bool FlexRay::Extension::transmitHook(const std::shared_ptr<Frame>& frame, bool& success) {
if(!frame || frame->network.getType() != Network::Type::FlexRay)
return true; // Don't hook non-FlexRay messages
+77 -4
View File
@@ -2,7 +2,7 @@
Python Examples
===============
Transmit CAN frames on HSCAN
Transmit CAN frames on DW CAN 01
============================
.. code-block:: python
@@ -15,7 +15,7 @@ Transmit CAN frames on HSCAN
device: icsneopy.Device = devices[0]
message = icsneopy.CANMessage()
message.network = icsneopy.Network(icsneopy.Network.NetID.HSCAN)
message.network = icsneopy.Network(icsneopy.Network.NetID.DWCAN_01)
message.arbid = 0x56
message.data = (0x11, 0x22, 0x33)
@@ -25,7 +25,7 @@ Transmit CAN frames on HSCAN
device.transmit(message)
Receive CAN frames on HSCAN
Receive CAN frames on DW CAN 01
===========================
.. code-block:: python
@@ -40,7 +40,7 @@ Receive CAN frames on HSCAN
def on_message(message: icsneopy.CANMessage):
print(message.arbid, message.data)
message_filter = icsneopy.MessageFilter(icsneopy.Network.NetID.HSCAN)
message_filter = icsneopy.MessageFilter(icsneopy.Network.NetID.DWCAN_01)
callback = icsneopy.MessageCallback(on_message, message_filter)
device.add_message_callback(callback)
@@ -88,3 +88,76 @@ Monitor Ethernet Status
time.sleep(1)
main()
TC10
====
.. code-block:: python
import icsneopy
import time
devices: list[icsneopy.Device] = icsneopy.find_all_devices()
device: icsneopy.Device = devices[0]
print(f"using {device} for TC10")
device.open()
netid = icsneopy.Network.NetID.AE_01
if device.supports_tc10():
# initial
status = device.get_tc10_status(netid)
print(f"initial status: wake: {status.wakeStatus}, sleep: {status.sleepStatus}")
time.sleep(1)
# sleep
device.request_tc10_sleep(netid)
print("waiting 1s for sleep to occur")
time.sleep(1)
status = device.get_tc10_status(netid)
print(f"post sleep status: wake: {status.wakeStatus}, sleep: {status.sleepStatus}")
# wake
device.request_tc10_wake(netid)
print("waiting 1s for wake to occur")
time.sleep(1)
status = device.get_tc10_status(netid)
print(f"post wake status: wake: {status.wakeStatus}, sleep: {status.sleepStatus}")
else:
print(f"{device} does not support TC10")
DoIP Ethernet Activation
========================
.. code-block:: python
import icsneopy
import time
devs = icsneopy.find_all_devices()
dev = devs[0]
dev.open()
# the device must be online for digital I/O
dev.go_online()
print(f"initial state: {dev.get_digital_io(icsneopy.IO.EthernetActivation, 1)}")
dev.set_digital_io(icsneopy.IO.EthernetActivation, 1, True)
print(f"after setting to true: {dev.get_digital_io(icsneopy.IO.EthernetActivation, 1)}")
# allow for observing the change
time.sleep(2)
dev.set_digital_io(icsneopy.IO.EthernetActivation, 1, False)
print(f"after setting to false: {dev.get_digital_io(icsneopy.IO.EthernetActivation, 1)}")
# allow for observing the change
time.sleep(2)
+1
View File
@@ -7,3 +7,4 @@ icsneopy
examples
api
radepsilon
+137
View File
@@ -0,0 +1,137 @@
=======================================
Python Examples for RAD-Epsilon Devices
=======================================
Working with PHY Settings
=========================
.. code-block:: python
import sys
import icsneopy
class PhyStaticInfo:
def __init__(self, index, type, switch_port):
self.index = index
self.type = type
self.switch_port = switch_port
def __repr__(self):
return f"{self.switch_port}: Type {self.type} / Index {self.index}"
# Switch Port name to PHY index and PHY type
RAD_EPSILON_PHY_INFO = {
"1": PhyStaticInfo(0, "88Q2112", "1"),
"2": PhyStaticInfo(1, "88Q2112", "2"),
"3": PhyStaticInfo(2, "88Q2112", "3"),
"4": PhyStaticInfo(3, "88Q2112", "4"),
"5": PhyStaticInfo(4, "88Q2112", "5"),
"6": PhyStaticInfo(5, "88Q2112", "6"),
"9": PhyStaticInfo(6, "88Q2112", "9"),
"10": PhyStaticInfo(7, "88Q2112", "10")
}
RAD_EPSILON_XL_PHY_INFO = {
"A1": PhyStaticInfo(0, "88Q222x", "A1"),
"A2": PhyStaticInfo(1, "88Q222x", "A2"),
"A3": PhyStaticInfo(2, "88Q222x", "A3"),
"A4": PhyStaticInfo(3, "88Q222x", "A4"),
"A5": PhyStaticInfo(4, "88Q222x", "A5"),
"A6": PhyStaticInfo(5, "88Q222x", "A6"),
"A11": PhyStaticInfo(6, "88Q222x", "A11"),
"A8": PhyStaticInfo(7, "88Q222x", "A8"),
"B1": PhyStaticInfo(8, "88Q222x", "B1"),
"B2": PhyStaticInfo(9, "88Q222x", "B2"),
"B3": PhyStaticInfo(10, "88Q222x", "B3"),
"B4": PhyStaticInfo(11, "88Q222x", "B4"),
"B5": PhyStaticInfo(12, "88Q222x", "B5"),
"B6": PhyStaticInfo(13, "88Q222x", "B6"),
"B7": PhyStaticInfo(14, "88Q222x", "B7"),
"B8": PhyStaticInfo(15, "88Q222x", "B8"),
"A9": PhyStaticInfo(16, "88X3310", "A9"),
"B9": PhyStaticInfo(17, "88X3310", "B9"),
}
def find_specific_device(type: icsneopy.DeviceType.Enum, serial: str | None = None) -> icsneopy.Device | None:
devices = icsneopy.find_all_devices()
for device in devices:
device_type = device.get_type().get_device_type()
if serial: # always find by serial if specified
if device.get_serial() == serial:
return device
elif device_type == type:
return device
return None
def find_rad_epsilonxl(serial: str | None = None) -> icsneopy.Device | None:
return find_specific_device(icsneopy.DeviceType.Enum.RADEpsilonXL, serial)
def find_rad_epsilon(serial: str | None = None) -> icsneopy.Device | None:
return find_specific_device(icsneopy.DeviceType.Enum.RADEpsilon, serial)
def report_phy_settings(device: icsneopy.Device, phy: PhyStaticInfo) -> bool:
phy_enable = device.settings.get_phy_enable(phy.index)
phy_mode = device.settings.get_phy_mode(phy.index)
phy_speed = device.settings.get_phy_speed(phy.index)
if phy_enable is None or phy_mode is None or phy_speed is None:
print(f"failed to get settings for PHY{phy.index} on port {phy.switch_port}")
print(f"PHY {phy.index} ({phy.type})")
print(f"\tPort: {phy.switch_port}")
print(f"\tEnabled: {'TRUE' if phy_enable else 'FALSE'}")
print(f"\tMode: {phy_mode}")
print(f"\tSpeed: {phy_speed}")
return True
def configure_phy(device: icsneopy.Device, phy: PhyStaticInfo, enable: bool, mode: int, speed: int) -> bool:
if not device.settings.set_phy_enable(phy.index, enable):
print(f"failed to set enable for PHY{phy.index} at port {phy.switch_port}")
return False
if not device.settings.set_phy_mode(phy.index, mode):
print(f"failed to set mode for PHY{phy.index} at port {phy.switch_port}")
return False
if not device.settings.set_phy_speed(phy.index, speed):
print(f"failed to set speed for PHY{phy.index} at port {phy.switch_port}")
return False
if not device.settings.apply(True):
print(f"failed to apply settings")
print(icsneopy.get_last_error())
return False
print(f"Successfully set settings for PHY{phy.index} at port {phy.switch_port}")
return True
# find the first RAD-EpsilonXL
device = find_rad_epsilonxl()
if not device:
print("failed to find a RAD-EpsilonXL to open")
sys.exit(-1)
if not device.open():
print(f"Failed to open {device.describe()}")
print(icsneopy.get_last_error())
sys.exit(-1)
print(f"Opened {device.describe()}")
print("Applying default settings")
if not device.settings.apply_defaults():
print(icsneopy.get_last_error())
sys.exit(-1)
print("Reporting PHY settings")
for phy in RAD_EPSILON_XL_PHY_INFO.values():
report_phy_settings(device, phy)
# Setting Port A1 to Master mode, enabled, 1G speed
phy = RAD_EPSILON_XL_PHY_INFO["A1"]
if configure_phy(device, phy, True, icsneopy.Settings.EthernetLinkMode.Master, icsneopy.Settings.EthernetLinkSpeed.Speed1G) and device.settings.refresh(True):
report_phy_settings(device, phy) # report them back
else:
print(icsneopy.get_last_error())
sys.exit(-1)
device.close()
-17
View File
@@ -1,7 +1,6 @@
option(LIBICSNEO_BUILD_C_INTERACTIVE_EXAMPLE "Build the command-line interactive C example." ON)
option(LIBICSNEO_BUILD_C_SIMPLE_EXAMPLE "Build the command-line simple C example." ON)
option(LIBICSNEO_BUILD_C_LEGACY_EXAMPLE "Build the command-line simple C example." ON)
option(LIBICSNEO_BUILD_C2_SIMPLE_EXAMPLE "Build the command-line simple C example." ON)
option(LIBICSNEO_BUILD_CPP_SIMPLE_EXAMPLE "Build the simple C++ example." ON)
option(LIBICSNEO_BUILD_CPP_INTERACTIVE_EXAMPLE "Build the command-line interactive C++ example." ON)
option(LIBICSNEO_BUILD_CPP_A2B_EXAMPLE "Build the A2B example." ON)
@@ -12,10 +11,6 @@ option(LIBICSNEO_BUILD_CPP_MDIO_EXAMPLE "Build the MDIO example." ON)
option(LIBICSNEO_BUILD_CPP_VSA_EXAMPLE "Build the VSA example." ON)
option(LIBICSNEO_BUILD_CPP_APP_ERROR_EXAMPLE "Build the app error example." ON)
# Disabled until we properly build these in-tree
# option(LIBICSNEO_BUILD_CSHARP_INTERACTIVE_EXAMPLE "Build the command-line interactive C# example." OFF)
# option(LIBICSNEO_BUILD_JAVA_INTERACTIVE_EXAMPLE "Build the command-line interactive Java example." OFF)
if(LIBICSNEO_BUILD_C_INTERACTIVE_EXAMPLE)
add_subdirectory(c/interactive)
endif()
@@ -28,10 +23,6 @@ if(LIBICSNEO_BUILD_C_LEGACY_EXAMPLE)
add_subdirectory(c/legacy)
endif()
if(LIBICSNEO_BUILD_C2_SIMPLE_EXAMPLE)
add_subdirectory(c2/simple)
endif()
if(LIBICSNEO_BUILD_CPP_SIMPLE_EXAMPLE)
add_subdirectory(cpp/simple)
endif()
@@ -67,11 +58,3 @@ endif()
if(LIBICSNEO_BUILD_CPP_APP_ERROR_EXAMPLE)
add_subdirectory(cpp/apperror)
endif()
# if(LIBICSNEO_BUILD_CSHARP_INTERACTIVE_EXAMPLE)
# add_subdirectory(csharp)
# endif()
# if(LIBICSNEO_BUILD_JAVA_INTERACTIVE_EXAMPLE)
# add_subdirectory(java)
# endif()
+22 -22
View File
@@ -128,7 +128,7 @@ void printAPIEvents() {
void printDeviceEvents(neodevice_t* device) {
neoevent_t events[99];
size_t eventCount = 99;
if(icsneo_getDeviceEvents(selectedDevice, events, &eventCount)) {
if(icsneo_getDeviceEvents(device, events, &eventCount)) {
if(eventCount == 1) {
printf("1 device event found!\n");
printf("Event 0x%x: %s\n", events[0].eventNumber, events[0].description);
@@ -160,7 +160,7 @@ char getCharInput(int numArgs, ...) {
char* list = (char*) calloc(numArgs, sizeof(char));
for(int i = 0; i < numArgs; ++i) {
*(list + i) = va_arg(vaList, int);
*(list + i) = (char)va_arg(vaList, int);
}
va_end(vaList);
@@ -285,10 +285,10 @@ int main() {
printf("Would you like to open or close %s?\n", productDescription);
printf("[1] Open\n[2] Close\n[3] Cancel\n\n");
char input = getCharInput(3, '1', '2', '3');
char userSelection = getCharInput(3, '1', '2', '3');
printf("\n");
switch(input) {
switch(userSelection) {
case '1':
// Attempt to open the selected device
if(icsneo_openDevice(selectedDevice)) {
@@ -346,10 +346,10 @@ int main() {
printf("Would you like to have %s go online or offline?\n", productDescription);
printf("[1] Online\n[2] Offline\n[3] Cancel\n\n");
char input = getCharInput(3, '1', '2', '3');
char userSelection = getCharInput(3, '1', '2', '3');
printf("\n");
switch(input) {
switch(userSelection) {
case '1':
// Attempt to go online
if(icsneo_goOnline(selectedDevice)) {
@@ -394,10 +394,10 @@ int main() {
printf("Would you like to enable or disable message polling for %s?\n", productDescription);
printf("[1] Enable\n[2] Disable\n[3] Cancel\n\n");
char input = getCharInput(3, '1', '2', '3');
char userSelection = getCharInput(3, '1', '2', '3');
printf("\n");
switch(input) {
switch(userSelection) {
case '1':
// Attempt to enable message polling
if(icsneo_enableMessagePolling(selectedDevice)) {
@@ -481,8 +481,8 @@ int main() {
case ICSNEO_NETWORK_TYPE_CAN: {
neomessage_can_t* canMsg = (neomessage_can_t*)frame;
printf("\t0x%03x [%zu] ", canMsg->arbid, canMsg->length);
for(size_t i = 0; i < canMsg->length; i++) {
printf("%02x ", canMsg->data[i]);
for(size_t j = 0; j < canMsg->length; j++) {
printf("%02x ", canMsg->data[j]);
}
if(canMsg->status.transmitMessage)
printf("TX%s %04x ", canMsg->status.globalError ? " ERR" : "", canMsg->description);
@@ -495,18 +495,18 @@ int main() {
size_t dataLen = (frameLen > 2) ? (frameLen - 2) : 0;
size_t numberBytesHeader = (dataLen > 1) ? 3 : 1;
size_t numberBytesData = frameLen - numberBytesHeader;
if(linMsg->netid == ICSNEO_NETID_LIN) {
if(linMsg->netid == ICSNEO_NETID_LIN_01) {
printf("LIN 1 | ID: 0x%02x [%zu] ", linMsg->header[0], dataLen);
}
else if (linMsg->netid == ICSNEO_NETID_LIN2) {
else if (linMsg->netid == ICSNEO_NETID_LIN_02) {
printf("LIN 2 | ID: 0x%02x [%zu] ", linMsg->header[0], dataLen);
}
for(size_t i = 0; i < dataLen; ++i) {
if (i < 2) {
printf("%02x ", linMsg->header[i+1]);
for(size_t j = 0; j < dataLen; ++j) {
if (j < 2) {
printf("%02x ", linMsg->header[j+1]);
} else {
printf("%02x ", linMsg->data[i-2]);
printf("%02x ", linMsg->data[j-2]);
}
}
if(numberBytesData > 0)
@@ -562,7 +562,7 @@ int main() {
neomessage_can_t msg = {0};
msg.arbid = 0x120;
msg.length = 6;
msg.netid = ICSNEO_NETID_HSCAN;
msg.netid = ICSNEO_NETID_DWCAN_01;
msg.data = sendMessageData;
msg.description = 0x1c5; // Random description to match the receipt
msg.status.canfdFDF = false;
@@ -606,7 +606,7 @@ int main() {
icsneo_describeDevice(selectedDevice, productDescription, &descriptionLength);
// Attempt to set baudrate and apply settings
if(icsneo_setBaudrate(selectedDevice, ICSNEO_NETID_HSCAN, 250000) && icsneo_settingsApply(selectedDevice)) {
if(icsneo_setBaudrate(selectedDevice, ICSNEO_NETID_DWCAN_01, 250000) && icsneo_settingsApply(selectedDevice)) {
printf("Successfully set HS CAN baudrate for %s to 250k!\n\n", productDescription);
} else {
printf("Failed to set HS CAN for %s to 250k!\n\n", productDescription);
@@ -632,7 +632,7 @@ int main() {
icsneo_describeDevice(selectedDevice, productDescription, &descriptionLength);
// Attempt to set baudrate and apply settings
if(icsneo_setBaudrate(selectedDevice, ICSNEO_NETID_HSCAN, 500000) && icsneo_settingsApply(selectedDevice)) {
if(icsneo_setBaudrate(selectedDevice, ICSNEO_NETID_DWCAN_01, 500000) && icsneo_settingsApply(selectedDevice)) {
printf("Successfully set HS CAN baudrate for %s to 500k!\n\n", productDescription);
} else {
printf("Failed to set HS CAN for %s to 500k!\n\n", productDescription);
@@ -725,7 +725,7 @@ int main() {
}
const bool set = selection2 == '1';
neoio_t type;
neoio_t type = ICSNEO_IO_ETH_ACTIVATION;
switch (selection)
{
case '1': type = ICSNEO_IO_ETH_ACTIVATION; break;
@@ -758,7 +758,7 @@ int main() {
icsneo_describeDevice(selectedDevice, productDescription, &descriptionLength);
printf("Termination is ");
const bool val = icsneo_isTerminationEnabledFor(selectedDevice, ICSNEO_NETID_HSCAN);
const bool val = icsneo_isTerminationEnabledFor(selectedDevice, ICSNEO_NETID_DWCAN_01);
neoevent_t err = { 0 };
if(icsneo_getLastError(&err)) {
printf("not available at this time: %s\n\n", err.description);
@@ -776,7 +776,7 @@ int main() {
}
// Attempt to set baudrate and apply settings
if(icsneo_setTerminationFor(selectedDevice, ICSNEO_NETID_HSCAN, selection2 == '1') && icsneo_settingsApply(selectedDevice)) {
if(icsneo_setTerminationFor(selectedDevice, ICSNEO_NETID_DWCAN_01, selection2 == '1') && icsneo_settingsApply(selectedDevice)) {
printf("Successfully set HS CAN termination for %s!\n\n", productDescription);
} else {
printf("Failed to set HS CAN termination for %s!\n\n", productDescription);
+1 -1
View File
@@ -11,7 +11,7 @@ e.g. pSettings.Settings.red2 -> pSettings.Settings.fire3
#include <stdbool.h>
#if defined _WIN32
#include "icsneo/platform/windows.h"
#include <windows.h>
#define SLEEP(msecs) Sleep(msecs)
#elif defined (__unix__) || (defined (__APPLE__) && defined (__MACH__))
#include <time.h>
+6 -6
View File
@@ -5,7 +5,7 @@
#include <stdbool.h>
#if defined _WIN32
#include "icsneo/platform/windows.h"
#include <windows.h>
#define SLEEP(msecs) Sleep(msecs)
#elif defined (__unix__) || (defined (__APPLE__) && defined (__MACH__))
#include <time.h>
@@ -58,7 +58,7 @@ int main() {
msg1.Protocol = SPY_PROTOCOL_LIN;
msg1.StatusBitField = 0;
msg1.StatusBitField2 = 0;
lNetworkID = NETID_LIN2;
lNetworkID = NETID_LIN_02;
msg1.Header[0] = 0x11; //protected ID
msg1.Header[1] = 0xaa;
msg1.Header[2] = 0xbb;
@@ -80,7 +80,7 @@ int main() {
icsSpyMessageJ1850 msg2 = {0};
msg2.Protocol = SPY_PROTOCOL_LIN;
msg2.StatusBitField = SPY_STATUS_INIT_MESSAGE;
lNetworkID = NETID_LIN;
lNetworkID = NETID_LIN_01;
msg2.Header[0] = 0x11; //protected ID
msg2.NumberBytesData = 0;
msg2.NumberBytesHeader = 1;
@@ -96,7 +96,7 @@ int main() {
msg3.Protocol = SPY_PROTOCOL_LIN;
msg3.StatusBitField = SPY_STATUS_INIT_MESSAGE;
msg3.StatusBitField2 = 0;
lNetworkID = NETID_LIN;
lNetworkID = NETID_LIN_01;
msg3.Header[0] = 0xe2; //protected ID
msg3.Header[1] = 0x44;
msg3.Header[2] = 0x33;
@@ -131,10 +131,10 @@ int main() {
const icsSpyMessageJ1850* linMsg = (icsSpyMessageJ1850*)&rxMsg[idx];
size_t frameLen = (linMsg->NumberBytesHeader + linMsg->NumberBytesData);
size_t dataLen = (frameLen > 2) ? (frameLen - 2) : 0;
if(linMsg->NetworkID == NETID_LIN) {
if(linMsg->NetworkID == NETID_LIN_01) {
printf("LIN 1 | ID: 0x%02x [%zu] ", linMsg->Header[0], dataLen);
}
else if (linMsg->NetworkID == NETID_LIN2) {
else if (linMsg->NetworkID == NETID_LIN_02) {
printf("LIN 2 | ID: 0x%02x [%zu] ", linMsg->Header[0], dataLen);
}
+11 -13
View File
@@ -123,7 +123,7 @@ void printAPIEvents() {
void printDeviceEvents(neodevice_t* device) {
neoevent_t events[99];
size_t eventCount = 99;
if(icsneo_getDeviceEvents(selectedDevice, events, &eventCount)) {
if(icsneo_getDeviceEvents(device, events, &eventCount)) {
if(eventCount == 1) {
printf("1 device event found!\n");
printf("Event 0x%x: %s\n", events[0].eventNumber, events[0].description);
@@ -155,7 +155,7 @@ char getCharInput(int numArgs, ...) {
char* list = (char*) calloc(numArgs, sizeof(char));
for(int i = 0; i < numArgs; ++i) {
*(list + i) = va_arg(vaList, int);
*(list + i) = (char)va_arg(vaList, int);
}
va_end(vaList);
@@ -285,7 +285,7 @@ int main() {
msg.header[1] = 0x11;
msg.header[2] = 0x22;
msg.length = 10;
msg.netid = ICSNEO_NETID_LIN;
msg.netid = ICSNEO_NETID_LIN_01;
msg.data = sendMessageData;
msg.linStatus.txCommander = 1;
msg.linStatus.txChecksumEnhanced = 1;
@@ -335,8 +335,8 @@ int main() {
case ICSNEO_NETWORK_TYPE_CAN: {
neomessage_can_t* canMsg = (neomessage_can_t*)frame;
printf("\t0x%03x [%zu] ", canMsg->arbid, canMsg->length);
for(size_t i = 0; i < canMsg->length; i++) {
printf("%02x ", canMsg->data[i]);
for(size_t j = 0; i < canMsg->length; j++) {
printf("%02x ", canMsg->data[j]);
}
if(canMsg->status.transmitMessage)
printf("TX%s %04x ", canMsg->status.globalError ? " ERR" : "", canMsg->description);
@@ -347,20 +347,18 @@ int main() {
neomessage_lin_t* linMsg = (neomessage_lin_t*)frame;
size_t frameLen = linMsg->length;
size_t dataLen = (frameLen > 2) ? (frameLen - 2) : 0;
size_t numberBytesHeader = (dataLen > 1) ? 3 : 1;
size_t numberBytesData = frameLen - numberBytesHeader;
if(linMsg->netid == ICSNEO_NETID_LIN) {
if(linMsg->netid == ICSNEO_NETID_LIN_01) {
printf("LIN 1 | ID: 0x%02x [%zu] ", linMsg->header[0], dataLen);
}
else if (linMsg->netid == ICSNEO_NETID_LIN2) {
else if (linMsg->netid == ICSNEO_NETID_LIN_02) {
printf("LIN 2 | ID: 0x%02x [%zu] ", linMsg->header[0], dataLen);
}
for(size_t i = 0; i < dataLen; ++i) {
if (i < 2) {
printf("%02x ", linMsg->header[i+1]);
for(size_t j = 0; j < dataLen; ++j) {
if (j < 2) {
printf("%02x ", linMsg->header[j+1]);
} else {
printf("%02x ", linMsg->data[i-2]);
printf("%02x ", linMsg->data[j-2]);
}
}
printf("| Checksum: 0x%02x\n", linMsg->checksum);
-2
View File
@@ -1,2 +0,0 @@
add_executable(libicsneo-simple-example src/main.c)
target_link_libraries(libicsneo-simple-example icsneoc2)
-454
View File
@@ -1,454 +0,0 @@
#include <icsneo/icsneoc2.h>
#include <stdio.h>
#include <time.h>
#if defined(_WIN32) || defined(_WIN64)
#include <windows.h>
#else
#include <unistd.h>
#endif
/**
* @brief Sleeps for a specified number of milliseconds.
*
* Sleeps for a specified number of milliseconds using Sleep() on Windows and sleep() on *nix.
*
* @param ms The number of milliseconds to sleep.
*/
void sleep_ms(uint32_t ms) {
#if defined(_WIN32) || defined(_WIN64)
Sleep(ms);
#else
sleep(ms / 1000);
#endif
}
/**
* @brief Prints an error message with the given string and error code.
*
* If the error code is not icsneoc2_error_success, prints the error string for the given error code
* and returns the error code.
*
* @param message The message to print.
* @param error The error code to print.
* @return error as int
*/
int print_error_code(const char* message, icsneoc2_error_t error) {
char error_str[256] = {0};
uint32_t error_length = 256;
icsneoc2_error_t res = icsneoc2_error_code_get(error, error_str, &error_length);
if (res != icsneoc2_error_success) {
printf("%s: Failed to get string for error code %d with error code %d\n", message, error, res);
return res;
}
printf("%s: \"%s\" (%u)\n", message, error_str, error);
return (int)error;
}
/**
* @brief Processes a list of messages from a device.
*
* This function iterates over a given array of messages received from a specified device.
* For each message in the array, it retrieves and prints the message type and bus type.
* If an error occurs while retrieving these details, an error message is printed.
*
* @param device A pointer to the icsneoc2_device_t structure representing the device.
* @param messages An array of pointers to icsneoc2_message_t structures containing the messages to process.
* @param messages_count The number of messages in the messages array.
*
* @return An icsneoc2_error_t value indicating success or failure of the message processing.
*/
int process_messages(icsneoc2_device_t* device, icsneoc2_message_t** messages, uint32_t messages_count);
/**
* @brief Prints device and global events for a given device.
*
* This function retrieves and prints all current events associated with the specified device,
* as well as any global events not tied to a specific device. For each event, it retrieves
* and prints a description. If retrieving events or their descriptions fails, an error
* message is printed. The function also prints a summary of the count of device-specific
* and global events processed.
*
* @param device A pointer to the icsneoc2_device_t structure representing the device to get events from.
* @param device_description A description of the device used in the output.
*/
void print_device_events(icsneoc2_device_t* device, const char* device_description);
/**
* @brief Transmits a series of CAN messages from a device.
*
* This function creates and transmits 100 CAN messages with incrementing payload data.
* Each message is configured with specific attributes such as network ID, arbitration
* ID, CANFD status, extended status, and baudrate switch. After successfully transmitting
* each message, it is freed from memory.
*
* @param device A pointer to the icsneoc2_device_t structure representing the device to transmit messages from.
*
* @return An icsneoc2_error_t value indicating success or failure of the message transmission process.
*/
int transmit_can_messages(icsneoc2_device_t* device);
/**
* @brief Get the RTC (Real time clock) of a device and print it.
*
* @param[in] device The device to get the RTC of.
* @param[in] description A description of the device for printing purpose.
*
* @return icsneoc2_error_t icsneoc2_error_success if successful, icsneoc2_error_invalid_parameters otherwise.
*/
icsneoc2_error_t get_and_print_rtc(icsneoc2_device_t* device, const char* description);
int main(int argc, char* argv[]) {
(void)argc;
(void)argv;
icsneoc2_device_t* devices[255] = {0};
uint32_t devices_count = 255;
printf("Finding devices...\n");
icsneoc2_error_t res = icsneoc2_device_find_all(devices, &devices_count, NULL);
if (res != icsneoc2_error_success) {
return print_error_code("\tFailed to find devices", res);
};
printf("OK, %u device%s found\n", devices_count, devices_count == 1 ? "" : "s");
// List off the devices
for (uint32_t i = 0; i < devices_count; i++) {
icsneoc2_device_t* device = devices[i];
// Get description of the device
const char description[255] = {0};
uint32_t description_length = 255;
res = icsneoc2_device_description_get(device, description, &description_length);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to get device description", res);
};
printf("%.*s @ Handle %p\n", description_length, description, device);
// Get/Set open options
icsneoc2_open_options_t options = icsneoc2_open_options_none;
res = icsneoc2_device_open_options_get(device, &options);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to get open options", res);
}
// Disable Syncing RTC and going online
options &= ~icsneoc2_open_options_sync_rtc;
options &= ~icsneoc2_open_options_go_online;
printf("\tDevice open options: 0x%x\n", options);
res = icsneoc2_device_open_options_set(device, options);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to set open options", res);
}
// Open the device
printf("\tOpening device: %s...\n", description);
res = icsneoc2_device_open(device);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to open device", res);
};
// Get timestamp resolution of the device
printf("\tGetting timestamp resolution... ");
uint32_t timestamp_resolution = 0;
res = icsneoc2_device_timestamp_resolution_get(device, &timestamp_resolution);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to get timestamp resolution", res);
}
printf("%uns\n", timestamp_resolution);
// Get baudrates for HSCAN
printf("\tGetting HSCAN Baudrate... ");
uint64_t baudrate = 0;
res = icsneoc2_device_baudrate_get(device, icsneoc2_netid_hscan, &baudrate);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to get baudrate", res);
};
printf("%llumbit/s\n", baudrate);
// Get FDbaudrates for HSCAN
printf("\tGetting FD HSCAN Baudrate... ");
uint64_t fd_baudrate = 0;
res = icsneoc2_device_canfd_baudrate_get(device, icsneoc2_netid_hscan, &fd_baudrate);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to get FD baudrate", res);
};
printf("%llumbit/s\n", fd_baudrate);
// Set baudrates for HSCAN
// save_to_device: If this is set to true, the baudrate will be saved on the device
// and will persist through a power cycle
bool save_to_device = false;
printf("\tSetting HSCAN Baudrate... ");
res = icsneoc2_device_baudrate_set(device, icsneoc2_netid_hscan, baudrate, save_to_device);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to set baudrate", res);
};
printf("Ok\n");
// Set FDbaudrates for HSCAN
printf("\tSetting FD HSCAN Baudrate... ");
res = icsneoc2_device_canfd_baudrate_set(device, icsneoc2_netid_hscan, fd_baudrate, save_to_device);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to set FD baudrate", res);
};
printf("Ok\n");
// Get RTC
printf("\tGetting RTC... ");
res = get_and_print_rtc(device, description);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to get RTC", res);
}
// Set RTC
printf("\tSetting RTC to current time... ");
time_t current_time = time(NULL);
res = icsneoc2_device_rtc_set(device, current_time);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to set RTC", res);
}
printf("Ok\n");
// Get RTC
printf("\tGetting RTC... ");
res = get_and_print_rtc(device, description);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to get RTC", res);
}
// Go online, start acking traffic
printf("\tGoing online... ");
res = icsneoc2_device_go_online(device, true);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to go online", res);
}
// Redundant check to show how to check if the device is online, if the previous
// icsneoc2_device_go_online call was successful we can assume we are online already
bool is_online = false;
res = icsneoc2_device_is_online(device, &is_online);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to check if online", res);
}
printf("%s\n", is_online ? "Online" : "Offline");
// Transmit CAN messages
res = transmit_can_messages(device);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to transmit CAN messages", res);
}
// Wait for the bus to collect some messages, requires an active bus to get messages
printf("\tWaiting 1 second for messages...\n");
sleep_ms(1000);
// Get the messages
icsneoc2_message_t* messages[20000] = {0};
uint32_t message_count = 20000;
printf("\tGetting messages from device with timeout of 3000ms on %s...\n", description);
res = icsneoc2_device_messages_get(device, messages, &message_count, 3000);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to get messages from device", res);
};
// Process the messages
res = process_messages(device, messages, message_count);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to process messages", res);
}
// Finally, close the device.
printf("\tClosing device: %s...\n", description);
res = icsneoc2_device_close(device);
if (res != icsneoc2_error_success) {
print_device_events(device, description);
return print_error_code("\tFailed to close device", res);
};
// Print device events
print_device_events(device, description);
}
printf("\n");
return 0;
}
icsneoc2_error_t get_and_print_rtc(icsneoc2_device_t* device, const char* description) {
time_t unix_epoch = 0;
icsneoc2_error_t res = icsneoc2_device_rtc_get(device, &unix_epoch);
if (res != icsneoc2_error_success) {
return res;
}
char rtc_time[32] = {0};
strftime(rtc_time, sizeof(rtc_time), "%Y-%m-%d %H:%M:%S", localtime(&unix_epoch));
printf("RTC: %lld %s\n", unix_epoch, rtc_time);
return icsneoc2_error_success;
}
void print_device_events(icsneoc2_device_t* device, const char* device_description) {
// Get device events
icsneoc2_event_t* events[1024] = {0};
uint32_t events_count = 1024;
icsneoc2_error_t res = icsneoc2_device_events_get(device, events, &events_count);
if (res != icsneoc2_error_success) {
(void)print_error_code("\tFailed to get device events", res);
return;
}
// Loop over each event and describe it.
for (uint32_t i = 0; i < events_count; i++) {
const char event_description[255] = {0};
uint32_t event_description_length = 255;
res = icsneoc2_event_description_get(events[i], event_description, &event_description_length);
if (res != icsneoc2_error_success) {
print_error_code("\tFailed to get event description", res);
continue;
}
printf("\t%s: Event %u: %s\n", device_description, i, event_description);
}
// Get global events
icsneoc2_event_t* global_events[1024] = {0};
uint32_t global_events_count = 1024;
res = icsneoc2_events_get(global_events, &global_events_count);
if (res != icsneoc2_error_success) {
(void)print_error_code("\tFailed to get global events", res);
return;
}
// Loop over each event and describe it.
for (uint32_t i = 0; i < global_events_count; i++) {
const char event_description[255] = {0};
uint32_t event_description_length = 255;
res = icsneoc2_event_description_get(global_events[i], event_description, &event_description_length);
if (res != icsneoc2_error_success) {
print_error_code("\tFailed to get global event description", res);
continue;
}
printf("\t%s: Global Event %u: %s\n", device_description, i, event_description);
}
printf("\t%s: Received %u events and %u global events\n", device_description, events_count, global_events_count);
}
int process_messages(icsneoc2_device_t* device, icsneoc2_message_t** messages, uint32_t messages_count) {
// Print the type and bus type of each message
uint32_t tx_count = 0;
for (uint32_t i = 0; i < messages_count; i++) {
icsneoc2_message_t* message = messages[i];
// Get the message type
icsneoc2_msg_type_t msg_type = 0;
icsneoc2_error_t res = icsneoc2_message_type_get(device, message, &msg_type);
if (res != icsneoc2_error_success) {
return print_error_code("\tFailed to get message type", res);
}
// Get the message type name
char msg_type_name[128] = {0};
uint32_t msg_type_name_length = 128;
res = icsneoc2_message_type_name_get(msg_type, msg_type_name, &msg_type_name_length);
if (res != icsneoc2_error_success) {
return print_error_code("\tFailed to get message type name", res);
}
// Check if the message is a bus message, ignore otherwise
if (msg_type != icsneoc2_msg_type_bus) {
printf("Ignoring message type: %u (%s)\n", msg_type, msg_type_name);
continue;
}
icsneoc2_msg_bus_type_t bus_type = 0;
res = icsneoc2_message_bus_type_get(device, message, &bus_type);
if (res != icsneoc2_error_success) {
return print_error_code("\tFailed to get message bus type", res);
}
const char bus_name[128] = {0};
uint32_t bus_name_length = 128;
res = icsneoc2_bus_type_name_get(bus_type, bus_name, &bus_name_length);
if (res != icsneoc2_error_success) {
return print_error_code("\tFailed to get message bus type name", res);
}
bool is_tx = false;
res = icsneoc2_message_is_transmit(device, message, &is_tx);
if (res != icsneoc2_error_success) {
return print_error_code("\tFailed to get message is transmit", res);
}
if (is_tx) {
tx_count++;
continue;
}
printf("\t%d) Message type: %u bus type: %s (%u)\n", i, msg_type, bus_name, bus_type);
if (bus_type == icsneoc2_msg_bus_type_can) {
uint32_t arbid = 0;
int32_t dlc = 0;
icsneoc2_netid_t netid = 0;
bool is_remote = false;
bool is_canfd = false;
bool is_extended = false;
uint8_t data[64] = {0};
uint32_t data_length = 64;
const char netid_name[128] = {0};
uint32_t netid_name_length = 128;
uint32_t result = icsneoc2_message_netid_get(device, message, &netid);
result += icsneoc2_netid_name_get(netid, netid_name, &netid_name_length);
result += icsneoc2_message_can_arbid_get(device, message, &arbid);
result += icsneoc2_message_can_dlc_get(device, message, &dlc);
result += icsneoc2_message_can_is_remote(device, message, &is_remote);
result += icsneoc2_message_can_is_canfd(device, message, &is_canfd);
result += icsneoc2_message_can_is_extended(device, message, &is_extended);
result += icsneoc2_message_data_get(device, message, data, &data_length);
if (result != icsneoc2_error_success) {
printf("\tFailed get get CAN parameters (error: %u) for index %u\n", result, i);
continue;
}
printf("\t NetID: %s (0x%x)\tArbID: 0x%x\t DLC: %u\t Remote: %d\t CANFD: %d\t Extended: %d\t Data length: %u\n", netid_name, netid, arbid, dlc, is_remote, is_canfd, is_extended, data_length);
printf("\t Data: [");
for (uint32_t x = 0; x < data_length; x++) {
printf(" 0x%x", data[x]);
}
printf(" ]\n");
}
}
printf("\tReceived %u messages total, %u were TX messages\n", messages_count, tx_count);
return icsneoc2_error_success;
}
int transmit_can_messages(icsneoc2_device_t* device) {
uint64_t counter = 0;
const uint32_t msg_count = 100;
printf("\tTransmitting %d messages...\n", msg_count);
for (uint32_t i = 0; i < msg_count; i++) {
// Create the message
icsneoc2_message_t* message = NULL;
uint32_t message_count = 1;
icsneoc2_error_t res = icsneoc2_message_can_create(device, &message, message_count);
if (res != icsneoc2_error_success) {
return print_error_code("\tFailed to create messages", res);
}
// Set the message attributes
res = icsneoc2_message_netid_set(device, message, icsneoc2_netid_hscan);
res += icsneoc2_message_can_arbid_set(device, message, 0x10);
res += icsneoc2_message_can_canfd_set(device, message, true);
res += icsneoc2_message_can_extended_set(device, message, true);
res += icsneoc2_message_can_baudrate_switch_set(device, message, true);
// Create the payload
uint8_t data[8] = {0};
data[0] = (uint8_t)(counter >> 56);
data[1] = (uint8_t)(counter >> 48);
data[2] = (uint8_t)(counter >> 40);
data[3] = (uint8_t)(counter >> 32);
data[4] = (uint8_t)(counter >> 24);
data[5] = (uint8_t)(counter >> 16);
data[6] = (uint8_t)(counter >> 8);
data[7] = (uint8_t)(counter >> 0);
res += icsneoc2_message_data_set(device, message, data, sizeof(data));
res += icsneoc2_message_can_dlc_set(device, message, -1);
if (res != icsneoc2_error_success) {
return print_error_code("\tFailed to modify message", res);
}
res = icsneoc2_device_messages_transmit(device, &message, &message_count);
res += icsneoc2_message_can_free(device, message);
if (res != icsneoc2_error_success) {
return print_error_code("\tFailed to transmit messages", res);
}
counter++;
}
return icsneoc2_error_success;
}
+8 -8
View File
@@ -79,7 +79,7 @@ void example0(const std::shared_ptr<icsneo::Device>& rada2b) {
true /* true if we want 16 bit channels in the message, false for 32 bit. This should match the RAD-A2B device setting */
);
msg->txmsg = true;
msg->network = icsneo::Network(icsneo::Network::NetID::A2B2);
msg->network = icsneo::Network(icsneo::Network::NetID::A2B_02);
// Load the WAV audio data into the desired channel, break if we fail to load
if(!msg->loadAudioBuffer(wavStream, channelMap)) {
@@ -192,7 +192,7 @@ void example3(const std::shared_ptr<icsneo::Device>& rada2b) {
std::shared_ptr<icsneo::A2BMessage> a2bmsgPtr = std::make_shared<icsneo::A2BMessage>(numFrames, icsneo::A2BMessage::TDMMode::TDM4, true);
icsneo::A2BMessage& a2bmsg = *a2bmsgPtr.get();
a2bmsg.network = icsneo::Network(icsneo::Network::NetID::A2B2);
a2bmsg.network = icsneo::Network(icsneo::Network::NetID::A2B_02);
a2bmsg.txmsg = true;
for(size_t frame = 0; frame < a2bmsg.getNumFrames(); frame++) {
@@ -241,13 +241,13 @@ void example3(const std::shared_ptr<icsneo::Device>& rada2b) {
}
/**
* Example 4: Retrieving A2B bus status using I2C messaages.
* Example 4: Retrieving A2B bus status using I2C messages.
*/
void example4(const std::shared_ptr<icsneo::Device>& rada2b) {
std::shared_ptr<icsneo::I2CMessage> msg = std::make_shared<icsneo::I2CMessage>();
std::shared_ptr<icsneo::MessageFilter> msgFilter = std::make_shared<icsneo::MessageFilter>(icsneo::Network::NetID::I2C2);
std::shared_ptr<icsneo::MessageFilter> msgFilter = std::make_shared<icsneo::MessageFilter>(icsneo::Network::NetID::I2C_02);
msg->network = icsneo::Network(icsneo::Network::NetID::I2C2);
msg->network = icsneo::Network(icsneo::Network::NetID::I2C_02);
msg->controlBytes.resize(1);
msg->controlBytes[0] = static_cast<uint8_t>(0x17u); // Register address for A2B INTTYPE
msg->dataBytes.resize(1, 0);
@@ -259,9 +259,9 @@ void example4(const std::shared_ptr<icsneo::Device>& rada2b) {
auto handler = rada2b->addMessageCallback(std::make_shared<icsneo::MessageCallback>(
[] (std::shared_ptr<icsneo::Message> newMsg) {
if(newMsg->type == icsneo::Message::Type::BusMessage) {
const auto& frame = std::dynamic_pointer_cast<icsneo::BusMessage>(newMsg);
if(frame && frame->network.getNetID() == icsneo::Network::NetID::I2C2) {
if(newMsg->type == icsneo::Message::Type::Frame) {
const auto& frame = std::dynamic_pointer_cast<icsneo::Frame>(newMsg);
if(frame && frame->network.getNetID() == icsneo::Network::NetID::I2C_02) {
const auto& i2cMessage = std::dynamic_pointer_cast<icsneo::I2CMessage>(frame);
if(!i2cMessage) {
@@ -8,7 +8,7 @@
#include "icsneo/communication/message/message.h"
/*
* App errors are responses from the device indicating internal runtime errors
* NOTE: To trigger the app error in this example, disable the HSCAN network on the device
* NOTE: To trigger the app error in this example, disable the DW CAN 01 network on the device
* (e.g. with neoVI Explorer)
*/
int main() {
@@ -58,14 +58,14 @@ int main() {
// Prepare a CAN message
std::cout << std::endl << "Transmitting a CAN frame... ";
auto txMessage = std::make_shared<icsneo::CANMessage>();
txMessage->network = icsneo::Network::NetID::HSCAN;
txMessage->network = icsneo::Network::NetID::DWCAN_01;
txMessage->arbid = 0x22;
txMessage->data.insert(txMessage->data.end(), {0xaa, 0xbb, 0xcc});
// The DLC will come from the length of the data vector
txMessage->isExtended = false;
txMessage->isCANFD = false;
// Transmit a CAN message on HSCAN, even though HSCAN is disabled on the device!
// Transmit a CAN message on DW CAN 01, even though DW CAN 01 is disabled on the device!
// Expect to see an app error caught in the callback defined above
ret = device->transmit(txMessage);
std::cout << (ret ? "OK" : "FAIL") << std::endl;
@@ -184,9 +184,9 @@ std::shared_ptr<icsneo::Device> selectDevice(const std::vector<std::shared_ptr<i
void printMessage(const std::shared_ptr<icsneo::Message>& message) {
switch(message->type) {
case icsneo::Message::Type::BusMessage: {
case icsneo::Message::Type::Frame: {
// A message of type Frame is guaranteed to be a Frame, so we can static cast safely
auto frame = std::static_pointer_cast<icsneo::BusMessage>(message);
auto frame = std::static_pointer_cast<icsneo::Frame>(message);
switch(frame->network.getType()) {
case icsneo::Network::Type::CAN: {
// A message of type CAN is guaranteed to be a CANMessage, so we can static cast safely
@@ -264,7 +264,7 @@ void printMessage(const std::shared_ptr<icsneo::Message>& message) {
break;
}
break;
} // end of icsneo::Message::Type::BusMessage
} // end of icsneo::Message::Type::Frame
case icsneo::Message::Type::CANErrorCount: {
// A message of type CANErrorCount is guaranteed to be a CANErrorCount, so we can static cast safely
auto cec = std::static_pointer_cast<icsneo::CANErrorMessage>(message);
@@ -508,7 +508,7 @@ int main() {
std::cout << "Transmitting a normal CAN frame..." << std::endl;
auto msg = std::make_shared<icsneo::CANMessage>();
msg->network = icsneo::Network::NetID::HSCAN;
msg->network = icsneo::Network::NetID::DWCAN_01;
msg->arbid = 0x120;
msg->data.insert(msg->data.end(), {0xaa, 0xbb, 0xcc, 0xdd, 0xee, 0xff});
msg->isExtended = false;
@@ -525,7 +525,7 @@ int main() {
/** Example of CAN FD
std::cout << "Transmitting an extended CAN FD frame... " << std::endl;
auto txMessage = std::make_shared<icsneo::CANMessage>();
txMessage->network = icsneo::Network::NetID::HSCAN;
txMessage->network = icsneo::Network::NetID::DWCAN_01;
txMessage->arbid = 0x1C5001C5;
txMessage->data.insert(txMessage->data.end(), {0xaa, 0xbb, 0xcc});
// The DLC will come from the length of the data vector
@@ -565,7 +565,7 @@ int main() {
selectedDevice = selectDevice(devices);
// Attempt to set baudrate and apply settings
if(selectedDevice->settings->setBaudrateFor(icsneo::Network::NetID::HSCAN, 250000) && selectedDevice->settings->apply()) {
if(selectedDevice->settings->setBaudrateFor(icsneo::Network::NetID::DWCAN_01, 250000) && selectedDevice->settings->apply()) {
std::cout << "Successfully set HS CAN baudrate for " << selectedDevice->describe() << " to 250k!" << std::endl;
} else {
std::cout << "Failed to set HS CAN baudrate for " << selectedDevice->describe() << " to 250k!" << std::endl << std::endl;
@@ -586,7 +586,7 @@ int main() {
selectedDevice = selectDevice(devices);
// Attempt to set baudrate and apply settings
if(selectedDevice->settings->setBaudrateFor(icsneo::Network::NetID::LSFTCAN, 250000) && selectedDevice->settings->apply()) {
if(selectedDevice->settings->setBaudrateFor(icsneo::Network::NetID::LSFTCAN_01, 250000) && selectedDevice->settings->apply()) {
std::cout << "Successfully set LSFT CAN baudrate for " << selectedDevice->describe() << " to 250k!" << std::endl;
} else {
std::cout << "Failed to set LSFT CAN baudrate for " << selectedDevice->describe() << " to 250k!" << std::endl << std::endl;
@@ -790,7 +790,7 @@ int main() {
selectedDevice = selectDevice(devices);
std::cout << "Termination is ";
const auto val = selectedDevice->settings->isTerminationEnabledFor(icsneo::Network::NetID::HSCAN);
const auto val = selectedDevice->settings->isTerminationEnabledFor(icsneo::Network::NetID::DWCAN_01);
if(!val.has_value()) {
std::cout << "not available at this time: " << icsneo::GetLastError() << std::endl << std::endl;
break;
@@ -807,7 +807,7 @@ int main() {
}
// Attempt to set termination and apply settings
if(selectedDevice->settings->setTerminationFor(icsneo::Network::NetID::HSCAN, selection2 == '1') && selectedDevice->settings->apply()) {
if(selectedDevice->settings->setTerminationFor(icsneo::Network::NetID::DWCAN_01, selection2 == '1') && selectedDevice->settings->apply()) {
std::cout << "Successfully set HS CAN termination for " << selectedDevice->describe() << std::endl;
} else {
std::cout << "Failed to set HS CAN termination for " << selectedDevice->describe() << std::endl;
+23 -23
View File
@@ -32,28 +32,28 @@ int main() {
int64_t baud = 19200;
std::cout << "Enable LIN commander resistor... ";
ret = device->settings->setCommanderResistorFor(icsneo::Network::NetID::LIN, true);
std::cout << "Enable LIN 01 commander resistor... ";
ret = device->settings->setCommanderResistorFor(icsneo::Network::NetID::LIN_01, true);
std::cout << (ret ? "OK" : "FAIL") << std::endl;
std::cout << "Disable LIN2 commander resistor... ";
ret = device->settings->setCommanderResistorFor(icsneo::Network::NetID::LIN2, false);
std::cout << "Disable LIN 02 commander resistor... ";
ret = device->settings->setCommanderResistorFor(icsneo::Network::NetID::LIN_02, false);
std::cout << (ret ? "OK" : "FAIL") << std::endl;
std::cout << "Setting LIN to operate at " << baud << "bit/s... ";
ret = device->settings->setBaudrateFor(icsneo::Network::NetID::LIN, baud);
std::cout << "Setting LIN 01 to operate at " << baud << "bit/s... ";
ret = device->settings->setBaudrateFor(icsneo::Network::NetID::LIN_01, baud);
std::cout << (ret ? "OK" : "FAIL") << std::endl;
std::cout << "Setting LIN2 to operate at " << baud << "bit/s... ";
ret = device->settings->setBaudrateFor(icsneo::Network::NetID::LIN2, baud);
std::cout << "Setting LIN 02 to operate at " << baud << "bit/s... ";
ret = device->settings->setBaudrateFor(icsneo::Network::NetID::LIN_02, baud);
std::cout << (ret ? "OK" : "FAIL") << std::endl;
std::cout << "Setting LIN mode to NORMAL... ";
ret = device->settings->setLINModeFor(icsneo::Network::NetID::LIN, NORMAL_MODE);
std::cout << "Setting LIN 01 mode to NORMAL... ";
ret = device->settings->setLINModeFor(icsneo::Network::NetID::LIN_01, NORMAL_MODE);
std::cout << (ret ? "OK" : "FAIL") << std::endl;
std::cout << "Setting LIN2 mode to NORMAL... ";
ret = device->settings->setLINModeFor(icsneo::Network::NetID::LIN2, NORMAL_MODE);
std::cout << "Setting LIN 02 mode to NORMAL... ";
ret = device->settings->setLINModeFor(icsneo::Network::NetID::LIN_02, NORMAL_MODE);
std::cout << (ret ? "OK" : "FAIL") << std::endl;
std::cout << "Applying settings... ";
@@ -61,14 +61,14 @@ int main() {
std::cout << (ret ? "OK" : "FAIL") << std::endl;
std::cout << "Getting LIN Baudrate... ";
int64_t readBaud = device->settings->getBaudrateFor(icsneo::Network::NetID::LIN);
int64_t readBaud = device->settings->getBaudrateFor(icsneo::Network::NetID::LIN_01);
if(readBaud < 0)
std::cout << "FAIL" << std::endl;
else
std::cout << "OK, " << (readBaud) << "bit/s" << std::endl;
std::cout << "Getting LIN2 Baudrate... ";
readBaud = device->settings->getBaudrateFor(icsneo::Network::NetID::LIN2);
std::cout << "Getting LIN 02 Baudrate... ";
readBaud = device->settings->getBaudrateFor(icsneo::Network::NetID::LIN_02);
if(readBaud < 0)
std::cout << "FAIL" << std::endl;
else
@@ -96,8 +96,8 @@ int main() {
std::cout << "OK" << std::endl << std::endl;
auto handler = device->addMessageCallback(std::make_shared<icsneo::MessageCallback>([&](std::shared_ptr<icsneo::Message> message) {
if(icsneo::Message::Type::BusMessage == message->type) {
auto frame = std::static_pointer_cast<icsneo::BusMessage>(message);
if(icsneo::Message::Type::Frame == message->type) {
auto frame = std::static_pointer_cast<icsneo::Frame>(message);
if(icsneo::Network::Type::LIN == frame->network.getType()) {
auto msg = std::static_pointer_cast<icsneo::LINMessage>(message);
std::cout << msg->network << " RX frame | ID: 0x" << std::hex << static_cast<int>(msg->ID) << " | ";
@@ -113,18 +113,18 @@ int main() {
}));
// We can transmit messages
std::cout << "Transmitting a LIN responder data frame... ";
std::cout << "Transmitting a LIN 02 responder data frame... ";
auto lin_r = std::make_shared<icsneo::LINMessage>();
lin_r->network = icsneo::Network::NetID::LIN2;
lin_r->network = icsneo::Network::NetID::LIN_02;
lin_r->ID = 0x11;
lin_r->linMsgType = icsneo::LINMessage::Type::LIN_UPDATE_RESPONDER;
lin_r->data = {0xaa, 0xbb, 0xcc, 0xdd, 0x11, 0x22, 0x33, 0x44};
ret = device->transmit(lin_r); // This will return false if the device does not support LIN
std::cout << (ret ? "OK" : "FAIL") << std::endl;
std::cout << "Transmitting a LIN commander header... ";
std::cout << "Transmitting a LIN 01 commander header... ";
auto lin_c = std::make_shared<icsneo::LINMessage>();
lin_c->network = icsneo::Network::NetID::LIN;
lin_c->network = icsneo::Network::NetID::LIN_01;
lin_c->ID = 0x11;
lin_c->linMsgType = icsneo::LINMessage::Type::LIN_HEADER_ONLY;
ret = device->transmit(lin_c);
@@ -132,9 +132,9 @@ int main() {
std::this_thread::sleep_for(std::chrono::milliseconds(100));
std::cout << "Transmitting a LIN commander frame with responder data... ";
std::cout << "Transmitting a LIN 01 commander frame with responder data... ";
auto lin_d = std::make_shared<icsneo::LINMessage>();
lin_d->network = icsneo::Network::NetID::LIN;
lin_d->network = icsneo::Network::NetID::LIN_01;
lin_d->ID = 0x22;
lin_d->isEnhancedChecksum = true;
lin_d->linMsgType = icsneo::LINMessage::Type::LIN_COMMANDER_MSG;
@@ -35,6 +35,8 @@ int main() {
msg->appendSignalArg(icsneo::LiveDataValueType::GPS_LATITUDE);
msg->appendSignalArg(icsneo::LiveDataValueType::GPS_LONGITUDE);
msg->appendSignalArg(icsneo::LiveDataValueType::GPS_ACCURACY);
msg->appendSignalArg(icsneo::LiveDataValueType::DAQ_ENABLE);
msg->appendSignalArg(icsneo::LiveDataValueType::MANUAL_TRIGGER);
msg->cmd = icsneo::LiveDataCommand::SUBSCRIBE;
msg->handle = icsneo::LiveDataUtil::getNewHandle();
msg->updatePeriod = std::chrono::milliseconds(100);
@@ -77,6 +79,28 @@ int main() {
}));
// Run handler for three seconds to observe the signal data
std::this_thread::sleep_for(std::chrono::seconds(3));
double val = 0;
for (unsigned int i = 0; i < 10; ++i)
{
// Set the values of signals we're watching so we can see them change live
auto setValMsg = std::make_shared<icsneo::LiveDataSetValueMessage>();
setValMsg->cmd = icsneo::LiveDataCommand::SET_VALUE;
setValMsg->handle = msg->handle;
// Convert the value format
icsneo::LiveDataValue ldValueDAQEnable;
icsneo::LiveDataValue ldValueManTrig;
if ((icsneo::LiveDataUtil::liveDataDoubleToValue(ldValueDAQEnable, val * 10) < 0) ||
(icsneo::LiveDataUtil::liveDataDoubleToValue(ldValueManTrig, val) < 0))
{
break;
}
setValMsg->appendSetValue(icsneo::LiveDataValueType::DAQ_ENABLE, ldValueDAQEnable);
setValMsg->appendSetValue(icsneo::LiveDataValueType::MANUAL_TRIGGER, ldValueManTrig);
device->setValueLiveData(setValMsg);
++val;
// Run handler for three seconds to observe the signal data
std::this_thread::sleep_for(std::chrono::seconds(3));
}
// Unsubscribe from the GPS signals and run handler for one more second
// Unsubscription only requires a valid in-use handle, in this case from our previous subscription
ret = device->unsubscribeLiveData(msg->handle);
+8 -8
View File
@@ -92,8 +92,8 @@ int main()
auto handler = device->addMessageCallback(std::make_shared<icsneo::MessageCallback>([&](std::shared_ptr<icsneo::Message> message)
{
if(icsneo::Message::Type::BusMessage == message->type) {
auto frame = std::static_pointer_cast<icsneo::BusMessage>(message);
if(icsneo::Message::Type::Frame == message->type) {
auto frame = std::static_pointer_cast<icsneo::Frame>(message);
if(icsneo::Network::Type::MDIO == frame->network.getType()) {
auto msg = std::static_pointer_cast<icsneo::MDIOMessage>(message);
std::cout << msg->network << " " << ((msg->isTXMsg)? "TX" : "RX") << " frame\n";
@@ -117,7 +117,7 @@ int main()
// We can transmit messages to read the PHY ID of BCM89810 PHY
std::cout << "\tTransmitting a MDIO request to read ID on BCM89810...\n";
auto mdio_r = std::make_shared<icsneo::MDIOMessage>();
mdio_r->network = icsneo::Network::NetID::MDIO1;
mdio_r->network = icsneo::Network::NetID::MDIO_01;
mdio_r->phyAddress = 0x00u;
mdio_r->regAddress = 0x02u;
mdio_r->direction = icsneo::MDIOMessage::Direction::Read;
@@ -128,7 +128,7 @@ int main()
// We can transmit messages to write to arbitrary register
std::cout << "\tTransmitting a MDIO request to write register on BCM89810...\n";
mdio_r = std::make_shared<icsneo::MDIOMessage>();
mdio_r->network = icsneo::Network::NetID::MDIO1;
mdio_r->network = icsneo::Network::NetID::MDIO_01;
mdio_r->phyAddress = 0x00u;
mdio_r->regAddress = 0x1Bu;
mdio_r->data = {0xAA, 0xAF};
@@ -140,7 +140,7 @@ int main()
// We can transmit messages to read back to arbitrary register
std::cout << "\tTransmitting a MDIO request to read register on BCM89810...\n";
mdio_r = std::make_shared<icsneo::MDIOMessage>();
mdio_r->network = icsneo::Network::NetID::MDIO1;
mdio_r->network = icsneo::Network::NetID::MDIO_01;
mdio_r->phyAddress = 0x00u;
mdio_r->regAddress = 0x1Bu;
mdio_r->direction = icsneo::MDIOMessage::Direction::Read;
@@ -154,7 +154,7 @@ int main()
// We can transmit messages to read the PHY ID of BCM89810 PHY
std::cout << "\tTransmitting a MDIO request to read ID on 88Q2112...\n";
mdio_r = std::make_shared<icsneo::MDIOMessage>();
mdio_r->network = icsneo::Network::NetID::MDIO1;
mdio_r->network = icsneo::Network::NetID::MDIO_01;
mdio_r->phyAddress = 0x06u;
mdio_r->devAddress = 0x01u;
mdio_r->regAddress = 0x0002u;
@@ -166,7 +166,7 @@ int main()
// We can transmit messages to write to arbitrary register
std::cout << "\tTransmitting a MDIO request to write register on 88Q2112...\n";
mdio_r = std::make_shared<icsneo::MDIOMessage>();
mdio_r->network = icsneo::Network::NetID::MDIO1;
mdio_r->network = icsneo::Network::NetID::MDIO_01;
mdio_r->phyAddress = 0x06u;
mdio_r->devAddress = 0x01u;
mdio_r->regAddress = 0x0902u;
@@ -179,7 +179,7 @@ int main()
// We can transmit messages to read back to arbitrary register
std::cout << "\tTransmitting a MDIO request to read register on 88Q2112...\n";
mdio_r = std::make_shared<icsneo::MDIOMessage>();
mdio_r->network = icsneo::Network::NetID::MDIO1;
mdio_r->network = icsneo::Network::NetID::MDIO_01;
mdio_r->phyAddress = 0x06u;
mdio_r->devAddress = 0x01u;
mdio_r->regAddress = 0x0902u;
+28 -28
View File
@@ -37,39 +37,39 @@ int main() {
}
std::cout << "OK" << std::endl;
std::cout << "\tGetting HSCAN Baudrate... ";
int64_t baud = device->settings->getBaudrateFor(icsneo::Network::NetID::HSCAN);
std::cout << "\tGetting DW CAN 01 Baudrate... ";
int64_t baud = device->settings->getBaudrateFor(icsneo::Network::NetID::DWCAN_01);
if(baud < 0)
std::cout << "FAIL" << std::endl;
else
std::cout << "OK, " << (baud/1000) << "kbit/s" << std::endl;
std::cout << "\tSetting HSCAN to operate at 125kbit/s... ";
ret = device->settings->setBaudrateFor(icsneo::Network::NetID::HSCAN, 125000);
std::cout << "\tSetting DW CAN 01 to operate at 125kbit/s... ";
ret = device->settings->setBaudrateFor(icsneo::Network::NetID::DWCAN_01, 125000);
std::cout << (ret ? "OK" : "FAIL") << std::endl;
// Changes to the settings do not take affect until you call settings->apply()!
// When you get the baudrate here, you're reading what the device is currently operating on
std::cout << "\tGetting HSCAN Baudrate... (expected to be unchanged) ";
baud = device->settings->getBaudrateFor(icsneo::Network::NetID::HSCAN);
std::cout << "\tGetting DW CAN 01 Baudrate... (expected to be unchanged) ";
baud = device->settings->getBaudrateFor(icsneo::Network::NetID::DWCAN_01);
if(baud < 0)
std::cout << "FAIL" << std::endl;
else
std::cout << "OK, " << (baud/1000) << "kbit/s" << std::endl;
std::cout << "\tGetting HSCANFD Baudrate... ";
baud = device->settings->getFDBaudrateFor(icsneo::Network::NetID::HSCAN);
std::cout << "\tGetting DW CAN 01 FD Baudrate... ";
baud = device->settings->getFDBaudrateFor(icsneo::Network::NetID::DWCAN_01);
if(baud < 0)
std::cout << "FAIL" << std::endl;
else
std::cout << "OK, " << (baud/1000) << "kbit/s" << std::endl;
std::cout << "\tSetting HSCANFD to operate at 8Mbit/s... ";
ret = device->settings->setFDBaudrateFor(icsneo::Network::NetID::HSCAN, 8000000);
std::cout << "\tSetting DW CAN 01 FD to operate at 8Mbit/s... ";
ret = device->settings->setFDBaudrateFor(icsneo::Network::NetID::DWCAN_01, 8000000);
std::cout << (ret ? "OK" : "FAIL") << std::endl;
std::cout << "\tGetting HSCANFD Baudrate... (expected to be unchanged) ";
baud = device->settings->getFDBaudrateFor(icsneo::Network::NetID::HSCAN);
std::cout << "\tGetting DW CAN 01 FD Baudrate... (expected to be unchanged) ";
baud = device->settings->getFDBaudrateFor(icsneo::Network::NetID::DWCAN_01);
if(baud < 0)
std::cout << "FAIL" << std::endl;
else
@@ -83,15 +83,15 @@ int main() {
std::cout << (ret ? "OK" : "FAIL") << std::endl;
// Now that we have applied, we expect that our operating baudrates have changed
std::cout << "\tGetting HSCAN Baudrate... ";
baud = device->settings->getBaudrateFor(icsneo::Network::NetID::HSCAN);
std::cout << "\tGetting DW CAN 01 Baudrate... ";
baud = device->settings->getBaudrateFor(icsneo::Network::NetID::DWCAN_01);
if(baud < 0)
std::cout << "FAIL" << std::endl;
else
std::cout << "OK, " << (baud/1000) << "kbit/s" << std::endl;
std::cout << "\tGetting HSCANFD Baudrate... ";
baud = device->settings->getFDBaudrateFor(icsneo::Network::NetID::HSCAN);
std::cout << "\tGetting DW CAN 01 (FD) Baudrate... ";
baud = device->settings->getFDBaudrateFor(icsneo::Network::NetID::DWCAN_01);
if(baud < 0)
std::cout << "FAIL" << std::endl;
else
@@ -155,13 +155,13 @@ int main() {
// We can transmit messages
std::cout << "\n\tTransmitting an extended CAN FD frame... ";
auto txMessage5 = std::make_shared<icsneo::CANMessage>();
txMessage5->network = icsneo::Network::NetID::HSCAN;
txMessage5->network = icsneo::Network::NetID::DWCAN_01;
txMessage5->arbid = 0x1C5001C5;
txMessage5->data.insert(txMessage5->data.end(), {0xaa, 0xbb, 0xcc});
// The DLC will come from the length of the data vector
txMessage5->isExtended = true;
txMessage5->isCANFD = true;
ret = device->transmit(txMessage5); // This will return false if the device does not support CAN FD, or does not have HSCAN
ret = device->transmit(txMessage5); // This will return false if the device does not support CAN FD, or does not have DWCAN_01
std::cout << (ret ? "OK" : "FAIL") << std::endl;
// We can also register a handler
@@ -169,9 +169,9 @@ int main() {
// MessageCallbacks are powerful, and can filter on things like ArbID for you. See the documentation
auto handler = device->addMessageCallback(std::make_shared<icsneo::MessageCallback>([](std::shared_ptr<icsneo::Message> message) {
switch(message->type) {
case icsneo::Message::Type::BusMessage: {
// A message of type BusMessage is guaranteed to be a BusMessage, so we can static cast safely
auto frame = std::static_pointer_cast<icsneo::BusMessage>(message);
case icsneo::Message::Type::Frame: {
// A message of type Frame is guaranteed to be a Frame, so we can static cast safely
auto frame = std::static_pointer_cast<icsneo::Frame>(message);
switch(frame->network.getType()) {
case icsneo::Network::Type::CAN: {
// A message of type CAN is guaranteed to be a CANMessage, so we can static cast safely
@@ -202,7 +202,7 @@ int main() {
case icsneo::Network::Type::Ethernet: {
auto ethMessage = std::static_pointer_cast<icsneo::EthernetMessage>(message);
std::cout << "\t\t" << ethMessage->network << " BusMessage - " << std::dec
std::cout << "\t\t" << ethMessage->network << " Frame - " << std::dec
<< ethMessage->data.size() << " bytes on wire\n";
std::cout << "\t\t Timestamped:\t"<< ethMessage->timestamp << " ns since 1/1/2007\n";
@@ -249,7 +249,7 @@ int main() {
break;
}
break;
} // end of icsneo::Message::Type::BusMessage
} // end of icsneo::Message::Type::Frame
case icsneo::Message::Type::CANErrorCount: {
// A message of type CANErrorCount is guaranteed to be a CANErrorCount, so we can static cast safely
auto cec = std::static_pointer_cast<icsneo::CANErrorMessage>(message);
@@ -290,25 +290,25 @@ int main() {
// We can transmit messages
std::cout << "\tTransmitting an extended CAN FD frame... ";
auto txMessage = std::make_shared<icsneo::CANMessage>();
txMessage->network = icsneo::Network::NetID::HSCAN;
txMessage->network = icsneo::Network::NetID::DWCAN_01;
txMessage->arbid = 0x1C5001C5;
txMessage->data.insert(txMessage->data.end(), {0xaa, 0xbb, 0xcc});
// The DLC will come from the length of the data vector
txMessage->isExtended = true;
txMessage->isCANFD = true;
ret = device->transmit(txMessage); // This will return false if the device does not support CAN FD, or does not have HSCAN
ret = device->transmit(txMessage); // This will return false if the device does not support CAN FD, or does not have DWCAN_01
std::cout << (ret ? "OK" : "FAIL") << std::endl;
std::cout << "\tTransmitting an ethernet frame on OP (BR) Ethernet 2... ";
std::cout << "\tTransmitting an ethernet frame on AE 02... ";
auto ethTxMessage = std::make_shared<icsneo::EthernetMessage>();
ethTxMessage->network = icsneo::Network::NetID::OP_Ethernet2;
ethTxMessage->network = icsneo::Network::NetID::AE_02;
ethTxMessage->data.insert(ethTxMessage->data.end(), {
0x00, 0xFC, 0x70, 0x00, 0x01, 0x02, /* Destination MAC */
0x00, 0xFC, 0x70, 0x00, 0x01, 0x01, /* Source MAC */
0x00, 0x00, /* Ether Type */
0x01, 0xC5, 0x01, 0xC5 /* Payload (will automatically be padded on transmit unless you set `ethTxMessage->noPadding`) */
});
ret = device->transmit(ethTxMessage); // This will return false if the device does not support OP (BR) Ethernet 2
ret = device->transmit(ethTxMessage); // This will return false if the device does not support AE 02
std::cout << (ret ? "OK" : "FAIL") << std::endl;
std::vector<icsneo::MiscIO> emisc = device->getEMiscIO();
+11 -11
View File
@@ -16,13 +16,13 @@ void onEvent(std::shared_ptr<icsneo::APIEvent> event) {
std::cout << event->describe() << std::endl;
}
std::vector<std::shared_ptr<icsneo::BusMessage>> constructRandomFrames(size_t frameCount, MessageType frameType) {
std::vector<std::shared_ptr<icsneo::Frame>> constructRandomFrames(size_t frameCount, MessageType frameType) {
static constexpr size_t ClassicCANSize = 8;
static constexpr size_t CANFDSize = 64;
static constexpr size_t ShortEthSize = 500;
static constexpr size_t LongEthSize = 1500;
std::vector<std::shared_ptr<icsneo::BusMessage>> frames;
std::vector<std::shared_ptr<icsneo::Frame>> frames;
std::random_device randDev;
std::mt19937 randEngine(randDev());
std::uniform_int_distribution randByteDist(0,255);
@@ -36,7 +36,7 @@ std::vector<std::shared_ptr<icsneo::BusMessage>> constructRandomFrames(size_t fr
// Short Ethernet
{
auto frame = std::make_shared<icsneo::EthernetMessage>();
frame->network = icsneo::Network::NetID::Ethernet;
frame->network = icsneo::Network::NetID::ETHERNET_01;
frames.push_back(frame);
frame->data.resize(ShortEthSize);
std::generate(frame->data.begin(), frame->data.end(), randByteGen);
@@ -46,7 +46,7 @@ std::vector<std::shared_ptr<icsneo::BusMessage>> constructRandomFrames(size_t fr
// Long Ethernet
{
auto frame = std::make_shared<icsneo::EthernetMessage>();
frame->network = icsneo::Network::NetID::Ethernet;
frame->network = icsneo::Network::NetID::ETHERNET_01;
frames.push_back(frame);
frame->data.resize(LongEthSize);
std::generate(frame->data.begin(), frame->data.end(), randByteGen);
@@ -56,7 +56,7 @@ std::vector<std::shared_ptr<icsneo::BusMessage>> constructRandomFrames(size_t fr
// Classic CAN
{
auto frame = std::make_shared<icsneo::CANMessage>();
frame->network = icsneo::Network::NetID::HSCAN2;
frame->network = icsneo::Network::NetID::DWCAN_02;
frames.push_back(frame);
frame->data.resize(ClassicCANSize);
@@ -67,7 +67,7 @@ std::vector<std::shared_ptr<icsneo::BusMessage>> constructRandomFrames(size_t fr
// CAN FD
{
auto frame = std::make_shared<icsneo::CANMessage>();
frame->network = icsneo::Network::NetID::HSCAN3;
frame->network = icsneo::Network::NetID::DWCAN_03;
frames.push_back(frame);
frame->data.resize(CANFDSize);
std::generate(frame->data.begin(), frame->data.end(), randByteGen);
@@ -166,10 +166,10 @@ int main(int argc, char* argv[]) {
uint64_t canFrameCount = 0;
uint64_t ethFrameCount = 0;
rxDevice->addMessageCallback(std::make_shared<icsneo::MessageCallback>([&](std::shared_ptr<icsneo::Message> msg) {
if(msg->type != icsneo::Message::Type::BusMessage) {
if(msg->type != icsneo::Message::Type::Frame) {
return;
}
const auto frame = std::static_pointer_cast<icsneo::BusMessage>(msg);
const auto frame = std::static_pointer_cast<icsneo::Frame>(msg);
if(frame->network.getType() == icsneo::Network::Type::CAN) {
++canFrameCount;
} else if(frame->network.getType() == icsneo::Network::Type::Ethernet) {
@@ -200,7 +200,7 @@ int main(int argc, char* argv[]) {
const uint8_t NumFrameTypes = 4;
const size_t FrameCountPerType = 2500;
std::vector<std::shared_ptr<icsneo::BusMessage>> frames;
std::vector<std::shared_ptr<icsneo::Frame>> frames;
for(uint8_t i = 0; i < NumFrameTypes; i++) {
std::cout << "info: transmitting " << FrameCountPerType << " random " << MessageTypeLabels[i] << " frames" << std::endl;
auto tempFrames = constructRandomFrames(FrameCountPerType, static_cast<MessageType>(i));
@@ -216,10 +216,10 @@ int main(int argc, char* argv[]) {
size_t currentMessage = 0;
rxDevice->addMessageCallback(std::make_shared<icsneo::MessageCallback>([&](std::shared_ptr<icsneo::Message> msg) {
if(msg->type != icsneo::Message::Type::BusMessage) {
if(msg->type != icsneo::Message::Type::Frame) {
return;
}
auto frame = std::static_pointer_cast<icsneo::BusMessage>(msg);
auto frame = std::static_pointer_cast<icsneo::Frame>(msg);
if(frames[currentMessage]->data == frame->data) {
currentMessage++;
}
-26
View File
@@ -1,26 +0,0 @@
cmake_minimum_required(VERSION 3.2)
project(icsneocsharp VERSION 0.2.0)
set(CMAKE_CXX_STANDARD 11)
include(GNUInstallDirs)
# Add an include directory like so if desired
#include_directories(${CMAKE_CURRENT_SOURCE_DIR}/include)
# Enable Warnings
if(MSVC)
# Force to always compile with W4
if(CMAKE_CXX_FLAGS MATCHES "/W[0-4]")
string(REGEX REPLACE "/W[0-4]" "/W4" CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS}")
else()
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} /W4")
endif()
else() #if(CMAKE_COMPILER_IS_GNUCC OR CMAKE_COMPILER_IS_GNUCXX)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -Wall -Wno-switch -Wno-unknown-pragmas")
endif()
add_subdirectory(${CMAKE_CURRENT_SOURCE_DIR}/../third-party/libicsneo ${CMAKE_CURRENT_BINARY_DIR}/third-party/libicsneo)
add_library(icsneocsharp SHARED ${CMAKE_CURRENT_SOURCE_DIR}/csharp_wrap.c)
target_link_libraries(icsneocsharp icsneoc)
-520
View File
@@ -1,520 +0,0 @@
using System.Collections.Generic;
namespace libicsneocsharp_example {
class InteractiveExample {
private uint msgLimit = 50000;
private neodevice_t selectedDevice;
private List<neodevice_t> devices = new List<neodevice_t>();
private uint numDevices = 0;
private void PrintAllDevices() {
if(numDevices == 0) {
System.Console.WriteLine("No devices found! Please scan for new devices.");
}
for(int i = 0; i < numDevices; i++) {
System.Text.StringBuilder description = new System.Text.StringBuilder(icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION);
int maxLength = icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION;
if(icsneocsharp.icsneo_describeDevice(devices[i], description, ref maxLength)) {
System.Console.Write("[" + (i + 1) + "] " + description.ToString() + "\tConnected: ");
if(icsneocsharp.icsneo_isOpen(devices[i])) {
System.Console.Write("Yes\t");
} else System.Console.Write("No\t");
System.Console.Write("Online: ");
if(icsneocsharp.icsneo_isOnline(devices[i])) {
System.Console.Write("Yes\t");
} else System.Console.Write("No\t");
System.Console.Write("Msg Polling: ");
if(icsneocsharp.icsneo_isMessagePollingEnabled(devices[i])) {
System.Console.Write("On\n");
} else System.Console.Write("Off\n");
} else {
System.Console.WriteLine("Description for device " + (i + 1) + " not available!");
}
}
}
private uint ScanNewDevices() {
neodevice_t newDevices = icsneocsharp.new_neodevice_t_array(99);
int count = 10;
icsneocsharp.icsneo_findAllDevices(newDevices, ref count);
numDevices += (uint) count;
for(int i = 0; i < numDevices; i++) {
devices.Add(icsneocsharp.neodevice_t_array_getitem(newDevices, i));
}
icsneocsharp.delete_neodevice_t_array(newDevices);
return (uint) count;
}
private void PrintMainMenu() {
System.Console.WriteLine("Press the letter next to the function you want to use:");
System.Console.WriteLine("A - List all devices");
System.Console.WriteLine("B - Scan for new devices");
System.Console.WriteLine("C - Open/close");
System.Console.WriteLine("D - Go online/offline");
System.Console.WriteLine("E - Enable/disable message polling");
System.Console.WriteLine("F - Get messages");
System.Console.WriteLine("G - Send message");
System.Console.WriteLine("H - Get events");
System.Console.WriteLine("I - Set HS CAN to 250K");
System.Console.WriteLine("J - Set HS CAN to 500K");
System.Console.WriteLine("X - Exit");
}
void PrintLastError() {
neoevent_t error = new neoevent_t();
if(icsneocsharp.icsneo_getLastError(error))
System.Console.WriteLine("Error 0x" + error.eventNumber + ": " + error.description);
else
System.Console.WriteLine("No errors found!");
}
void PrintAPIEvents() {
neoevent_t events = icsneocsharp.new_neoevent_t_array(99);
int eventCount = 99;
if(icsneocsharp.icsneo_getEvents(events, ref eventCount)) {
if(eventCount == 1) {
neoevent_t evt = icsneocsharp.neoevent_t_array_getitem(events, 0);
System.Console.WriteLine("1 API event found!");
System.Console.WriteLine("Event 0x" + evt.eventNumber + ": " + evt.description);
} else {
System.Console.WriteLine(eventCount + " API events found!");
for(var i = 0; i < eventCount; ++i) {
neoevent_t evt = icsneocsharp.neoevent_t_array_getitem(events, i);
System.Console.WriteLine("Event 0x" + evt.eventNumber + ": " + evt.description);
}
}
} else {
System.Console.WriteLine("Failed to get API events!");
}
icsneocsharp.delete_neoevent_t_array(events);
}
void PrintDeviceEvents(neodevice_t device) {
neoevent_t events = icsneocsharp.new_neoevent_t_array(99);
int eventCount = 99;
if(icsneocsharp.icsneo_getDeviceEvents(device, events, ref eventCount)) {
if(eventCount == 1) {
neoevent_t evt = icsneocsharp.neoevent_t_array_getitem(events, 0);
System.Console.WriteLine("1 device event found!");
System.Console.WriteLine("Event 0x" + evt.eventNumber + ": " + evt.description);
} else {
System.Console.WriteLine(eventCount + " device events found!");
for(var i = 0; i < eventCount; ++i) {
neoevent_t evt = icsneocsharp.neoevent_t_array_getitem(events, i);
System.Console.WriteLine("Event 0x" + evt.eventNumber + ": " + evt.description);
}
}
} else {
System.Console.WriteLine("Failed to get API events!");
}
icsneocsharp.delete_neoevent_t_array(events);
}
private char GetCharInput(List<char> allowed) {
bool found = false;
char key = '0';
while(!found) {
key = System.Console.ReadKey().KeyChar;
System.Console.WriteLine();
foreach(char compare in allowed) {
if(compare == key) {
found = true;
break;
}
}
if(!found) {
System.Console.WriteLine("Input did not match expected options. Please try again.");
}
}
return key;
}
neodevice_t SelectDevice() {
System.Console.WriteLine("Please select a device:");
PrintAllDevices();
System.Console.WriteLine();
int selectedDeviceNum = 10;
while(selectedDeviceNum > numDevices) {
char deviceSelection = GetCharInput(new List<char> { '1', '2', '3', '4', '5', '6', '7', '8', '9' });
selectedDeviceNum = (int)char.GetNumericValue(deviceSelection);
if(selectedDeviceNum > numDevices) {
System.Console.WriteLine("Selected device out of range!");
}
}
System.Console.WriteLine();
return devices[selectedDeviceNum - 1];
}
public void Run() {
neoversion_t version = icsneocsharp.icsneo_getVersion();
System.Console.WriteLine("ICS icsneocsharp.dll version " + version.major + "." + version.minor + "." + version.patch);
System.Console.WriteLine();
while(true) {
PrintMainMenu();
System.Console.WriteLine();
char input = GetCharInput(new List<char> { 'A', 'a', 'B', 'b', 'C', 'c', 'D', 'd', 'E', 'e', 'F', 'f', 'G', 'g', 'H', 'h', 'I', 'i', 'J', 'j', 'X', 'x' });
System.Console.WriteLine();
switch(input) {
// List current devices
case 'A':
goto case 'a';
case 'a':
PrintAllDevices();
System.Console.WriteLine();
break;
// Scan for new devices
case 'B':
goto case 'b';
case 'b': {
var numNewDevices = ScanNewDevices();
if(numNewDevices == 1) {
System.Console.WriteLine("1 new device found!");
} else {
System.Console.WriteLine(numNewDevices + " new devices found!");
}
PrintAllDevices();
System.Console.WriteLine();
break;
}
// Open/close a device
case 'C':
goto case 'c';
case 'c': {
// Select a device and get its description
if(numDevices == 0) {
System.Console.WriteLine("No devices found! Please scan for new devices.\n");
break;
}
selectedDevice = SelectDevice();
// Get the product description for the device
System.Text.StringBuilder description = new System.Text.StringBuilder(icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION);
int maxLength = icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION;
icsneocsharp.icsneo_describeDevice(selectedDevice, description, ref maxLength);
System.Console.WriteLine("Would you like to open or close " + description + "?");
System.Console.WriteLine("[1] Open\n[2] Close\n[3] Cancel\n");
char option = GetCharInput(new List<char> { '1', '2', '3' });
System.Console.WriteLine();
switch(option) {
case '1':
// Attempt to open the selected device
if(icsneocsharp.icsneo_openDevice(selectedDevice)) {
System.Console.WriteLine(description + " successfully opened!\n");
} else {
System.Console.WriteLine(description + " failed to open!\n");
PrintLastError();
System.Console.WriteLine();
}
break;
case '2':
// Attempt to close the device
if(icsneocsharp.icsneo_closeDevice(selectedDevice)) {
numDevices--;
System.Console.WriteLine("Successfully closed " + description + "!\n");
devices.Remove(selectedDevice);
selectedDevice = null;
} else {
System.Console.WriteLine("Failed to close " + description.ToString() + "!\n");
PrintLastError();
System.Console.WriteLine();
}
break;
default:
System.Console.WriteLine("Canceling!\n");
break;
}
break;
}
// Go online/offline
case 'D':
goto case 'd';
case 'd': {
// Select a device and get its description
if(numDevices == 0) {
System.Console.WriteLine("No devices found! Please scan for new devices.\n");
break;
}
selectedDevice = SelectDevice();
// Get the product description for the device
System.Text.StringBuilder description = new System.Text.StringBuilder(icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION);
int maxLength = icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION;
icsneocsharp.icsneo_describeDevice(selectedDevice, description, ref maxLength);
System.Console.WriteLine("Would you like to have " + description.ToString() + " go online or offline?");
System.Console.WriteLine("[1] Online\n[2] Offline\n[3] Cancel\n");
char option = GetCharInput(new List<char> { '1', '2', '3' });
System.Console.WriteLine();
switch(option) {
case '1':
// Attempt to go online
if(icsneocsharp.icsneo_goOnline(selectedDevice)) {
System.Console.WriteLine(description + " successfully went online!\n");
} else {
System.Console.WriteLine(description + " failed to go online!\n");
PrintLastError();
System.Console.WriteLine();
}
break;
case '2':
// Attempt to go offline
if(icsneocsharp.icsneo_goOffline(selectedDevice)) {
System.Console.WriteLine(description + " successfully went offline!\n");
} else {
System.Console.WriteLine(description + " failed to go offline!\n");
PrintLastError();
System.Console.WriteLine();
}
break;
default:
System.Console.WriteLine("Canceling!\n");
break;
}
break;
}
// Enable/disable message polling
case 'E':
goto case 'e';
case 'e': {
// Select a device and get its description
if(numDevices == 0) {
System.Console.WriteLine("No devices found! Please scan for new devices.\n");
break;
}
selectedDevice = SelectDevice();
// Get the product description for the device
System.Text.StringBuilder description = new System.Text.StringBuilder(icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION);
int maxLength = icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION;
icsneocsharp.icsneo_describeDevice(selectedDevice, description, ref maxLength);
System.Console.WriteLine("Would you like to enable or disable message polling for " + description.ToString() + "?");
System.Console.WriteLine("[1] Enable\n[2] Disable\n[3] Cancel\n");
char option = GetCharInput(new List<char> { '1', '2', '3' });
System.Console.WriteLine();
switch(option) {
case '1':
// Attempt to enable message polling
if(icsneocsharp.icsneo_enableMessagePolling(selectedDevice)) {
System.Console.WriteLine("Successfully enabled message polling for " + description.ToString() + "!\n");
} else {
System.Console.WriteLine("Failed to enable message polling for " + description.ToString() + "!\n");
PrintLastError();
System.Console.WriteLine();
}
// Manually setting the polling message limit as done below is optional
// It will default to 20k if not set
// Attempt to set the polling message limit
if(icsneocsharp.icsneo_setPollingMessageLimit(selectedDevice, msgLimit)) {
System.Console.WriteLine("Successfully set message polling limit for " + description.ToString() + "!\n");
} else {
System.Console.WriteLine("Failed to set polling message limit for " + description.ToString() + "!\n");
PrintLastError();
System.Console.WriteLine();
}
break;
case '2':
// Attempt to disable message polling
if(icsneocsharp.icsneo_disableMessagePolling(selectedDevice)) {
System.Console.WriteLine("Successfully disabled message polling for " + description.ToString() + "!\n");
} else {
System.Console.WriteLine("Failed to disable message polling for " + description.ToString() + "!\n");
PrintLastError();
System.Console.WriteLine();
}
break;
default:
System.Console.WriteLine("Canceling!\n");
break;
}
}
break;
case 'F':
goto case 'f';
case 'f': {
// Select a device and get its description
if(numDevices == 0) {
System.Console.WriteLine("No devices found! Please scan for new devices.\n");
break;
}
selectedDevice = SelectDevice();
// Get the product description for the device
System.Text.StringBuilder description = new System.Text.StringBuilder(icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION);
int maxLength = icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION;
icsneocsharp.icsneo_describeDevice(selectedDevice, description, ref maxLength);
// Prepare the neomessage_t array and size for reading in the messages
neomessage_t msgs = icsneocsharp.new_neomessage_t_array((int)msgLimit);
int msgCount = (int)msgLimit;
if(!icsneocsharp.icsneo_getMessages(selectedDevice, msgs, ref msgCount, 0)) {
System.Console.WriteLine("Failed to get messages for " + description.ToString() + "!\n");
PrintLastError();
icsneocsharp.delete_neomessage_t_array(msgs);
System.Console.WriteLine();
break;
}
if(msgCount == 1) {
System.Console.WriteLine("1 message received from " + description.ToString() + "!");
} else {
System.Console.WriteLine(msgCount + " messages received from " + description.ToString() + "!");
}
// Print out the received messages
for(int i = 0; i < msgCount; i++) {
neomessage_t msg = icsneocsharp.neomessage_t_array_getitem(msgs, i);
if(msg.type == icsneocsharp.ICSNEO_NETWORK_TYPE_CAN) {
System.Console.Write("\t0x" + "{0:x}" + " [" + msg.length + "] ", icsneocsharp.neomessage_can_t_cast(msg).arbid);
for(int j = 0; j < msg.length; j++) {
System.Console.Write("{0:x} ", icsneocsharp.neomessage_can_t_cast(msg).data[j]);
}
System.Console.WriteLine("(" + msg.timestamp + ")");
} else {
if(msg.netid != 0)
System.Console.WriteLine("\tMessage on netid " + msg.netid + " with length " + msg.length);
}
}
icsneocsharp.delete_neomessage_t_array(msgs);
break;
}
// Send message
case 'G':
goto case 'g';
case 'g': {
// Select a device and get its description
if(numDevices == 0) {
System.Console.WriteLine("No devices found! Please scan for new devices.\n");
break;
}
selectedDevice = SelectDevice();
// Get the product description for the device
System.Text.StringBuilder description = new System.Text.StringBuilder(icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION);
int maxLength = icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION;
icsneocsharp.icsneo_describeDevice(selectedDevice, description, ref maxLength);
// Start generating sample msg
neomessage_can_t msg = new neomessage_can_t();
msg.arbid = 0x120;
msg.length = 6;
msg.netid = (ushort)icsneocsharp.ICSNEO_NETID_HSCAN;
msg.data = new byte[6] { 0xaa, 0xbb, 0xcc, 0xdd, 0xee, 0xff };
msg.status.canfdFDF = 0;
msg.status.extendedFrame = 0;
msg.status.canfdBRS = 0;
// End generating sample msg
// Attempt to transmit the sample msg
if(icsneocsharp.icsneo_transmit(selectedDevice, icsneocsharp.from_can_neomessage_t_cast(msg))) {
System.Console.WriteLine("Message transmit successful!");
} else {
System.Console.WriteLine("Failed to transmit message to " + description.ToString() + "!\n");
PrintLastError();
System.Console.WriteLine();
}
break;
}
// Get events
case 'H':
goto case 'h';
case 'h':
PrintAPIEvents();
System.Console.WriteLine();
break;
// Set HS CAN to 250k
case 'I':
goto case 'i';
case 'i': {
// Select a device and get its description
if(numDevices == 0) {
System.Console.WriteLine("No devices found! Please scan for new devices.\n");
break;
}
selectedDevice = SelectDevice();
// Get the product description for the device
System.Text.StringBuilder description = new System.Text.StringBuilder(icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION);
int maxLength = icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION;
icsneocsharp.icsneo_describeDevice(selectedDevice, description, ref maxLength);
// Attempt to set baudrate and apply settings
if(icsneocsharp.icsneo_setBaudrate(selectedDevice, (ushort)icsneocsharp.ICSNEO_NETID_HSCAN, 250000) && icsneocsharp.icsneo_settingsApply(selectedDevice)) {
System.Console.WriteLine("Successfully set HS CAN baudrate for " + description.ToString() + "to 250k!\n");
} else {
System.Console.WriteLine("Failed to set HS CAN for " + description.ToString() + " to 250k!\n");
PrintLastError();
System.Console.WriteLine();
}
break;
}
// Set HS CAN to 500k
case 'J':
goto case 'j';
case 'j': {
// Select a device and get its description
if(numDevices == 0) {
System.Console.WriteLine("No devices found! Please scan for new devices.\n");
break;
}
selectedDevice = SelectDevice();
// Get the product description for the device
System.Text.StringBuilder description = new System.Text.StringBuilder(icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION);
int maxLength = icsneocsharp.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION;
icsneocsharp.icsneo_describeDevice(selectedDevice, description, ref maxLength);
// Attempt to set baudrate and apply settings
if(icsneocsharp.icsneo_setBaudrate(selectedDevice, (ushort)icsneocsharp.ICSNEO_NETID_HSCAN, 500000) && icsneocsharp.icsneo_settingsApply(selectedDevice)) {
System.Console.WriteLine("Successfully set HS CAN baudrate for " + description.ToString() + "to 500k!\n");
} else {
System.Console.WriteLine("Failed to set HS CAN for " + description.ToString() + " to 500k!\n");
PrintLastError();
System.Console.WriteLine();
}
break;
}
case 'X':
goto case 'x';
case 'x':
System.Console.WriteLine("Exiting program");
return;
default:
System.Console.WriteLine("Unexpected input, exiting!");
return;
}
}
}
}
}
-8
View File
@@ -1,8 +0,0 @@
namespace libicsneocsharp_example {
class Program {
static void Main(string[] args) {
InteractiveExample example = new InteractiveExample();
example.Run();
}
}
}
-57
View File
@@ -1,57 +0,0 @@
# libicsneo C# Example
This is an example console application that uses the icsneocsharp library to control an Intrepid Control Systems hardware device.
## Cloning
This will create a copy of the repository on your local machine.
Run:
```shell
git clone https://github.com/intrepidcs/libicsneo-examples --recursive
```
Alternatively, if you cloned without the `--recursive` flag, you must enter the `libicsneo-examples` folder and run the following:
```shell
git submodule update --recursive --init
```
If you haven't done this, `third-party/libicsneo` will be empty and you won't be able to build!
## Windows using Visual Studio 2017+
### Building the DLLs
#### icsneoc
First, we are going to build the icsneoc library into a .dll file that is used by the C# wrapper to access the library functions.
1. Launch Visual Studio and open the `libicsneo-examples` folder.
2. Choose `File->Open->Cmake...`
3. Navigate to `third-party/libicsneo` and select the `CMakeLists.txt` there.
4. Visual Studio will process the CMake project.
5. Select `Build->Rebuild All`
6. Visual Studio will generate the `icsneoc.dll` file, which can then be found by selecting `Project->Cmake Cache (x64-Debug Only)->Open in Explorer`. If the file cannot be found, search in `libicsneo-examples/third-party/libicsneo/out/build/x64-Debug` and double-check that the build succeeded in step 5.
7. Move the `icsneoc.dll` file to the `/C/Windows/System32` folder.
#### icsneocsharp
Next, we are going to build the wrapper functions into a .dll file that is used to access the library functions in C#.
1. Launch a terminal window and change directories into `libicsneo-examples/libicsneocsharp-example`, then create a build directory by running `mkdir -p build`
2. Enter the build directory with `cd build`
3. Run `cmake ..`
4. Run `cmake --build .`
5. The `icsneocsharp.dll` file will be generated in `libicsneo-examples/libicsneocsharp-example/build/Debug`
6. Move the `icsneocsharp.dll` file to the `/C/Windows/System32` folder.
### Building the example program
1. Choose `File->Open->Project/Solution...`
2. Navigate to `libicsneo-examples/libicsneocsharp-example` and select the `libicsneocsharp-example.sln` there.
3. Visual Studio will process the project.
4. Select `Build->Rebuild Solution`
5. Click on the dropdown arrow attached to the green play button (labelled "Select Startup Item") and select `libicsneocsharp-example`
6. Click on the green play button to run the example.
-26
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@@ -1,26 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class SWIGTYPE_p_time_t {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
internal SWIGTYPE_p_time_t(global::System.IntPtr cPtr, bool futureUse) {
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
protected SWIGTYPE_p_time_t() {
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(SWIGTYPE_p_time_t obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
}
@@ -1,26 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class SWIGTYPE_p_unsigned_char {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
internal SWIGTYPE_p_unsigned_char(global::System.IntPtr cPtr, bool futureUse) {
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
protected SWIGTYPE_p_unsigned_char() {
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(SWIGTYPE_p_unsigned_char obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
}
@@ -1,26 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class SWIGTYPE_p_unsigned_int {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
internal SWIGTYPE_p_unsigned_int(global::System.IntPtr cPtr, bool futureUse) {
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
protected SWIGTYPE_p_unsigned_int() {
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(SWIGTYPE_p_unsigned_int obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
}
@@ -1,26 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class SWIGTYPE_p_unsigned_short {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
internal SWIGTYPE_p_unsigned_short(global::System.IntPtr cPtr, bool futureUse) {
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
protected SWIGTYPE_p_unsigned_short() {
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(SWIGTYPE_p_unsigned_short obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
}
-26
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@@ -1,26 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class SWIGTYPE_p_void {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
internal SWIGTYPE_p_void(global::System.IntPtr cPtr, bool futureUse) {
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
protected SWIGTYPE_p_void() {
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(SWIGTYPE_p_void obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
}
-76
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@@ -1,76 +0,0 @@
%module icsneocsharp
%include <windows.i>
%include <typemaps.i>
%include <stdint.i>
%include <carrays.i>
%include <arrays_csharp.i>
#define DLLExport
%typemap(ctype) uint8_t const *data "unsigned char *"
%typemap(imtype, out="System.IntPtr") uint8_t const *data "byte[]"
%typemap(cstype) uint8_t const *data "byte[]"
%typemap(in) uint8_t const *data %{
$1 = $input;
%}
%typemap(csvarin) uint8_t const *data %{
set {
icsneocsharpPINVOKE.$csclazznamedata_set(swigCPtr, value);
}
%}
%typemap(csvarout, excode=SWIGEXCODE2) uint8_t const *data %{
get {
byte[] ret = new byte[this.length];
System.IntPtr data = $imcall;
System.Runtime.InteropServices.Marshal.Copy(data, ret, 0, (int)this.length)$excode;
return ret;
}
%}
%typemap(ctype) char *str "char *"
%typemap(imtype) char *str "System.Text.StringBuilder"
%typemap(cstype) char *str "System.Text.StringBuilder"
%{
#include "icsneo/icsneoc.h"
%}
%apply int *INOUT {size_t *};
%ignore icsneo_addMessageCallback;
%ignore icsneo_removeMessageCallback;
%ignore icsneo_addEventCallback;
%ignore icsneo_removeEventCallback;
%include "icsneo/icsneoc.h"
%include "icsneo/device/neodevice.h"
%include "icsneo/communication/message/neomessage.h"
%include "icsneo/device/devicetype.h"
%include "icsneo/api/version.h"
%include "icsneo/api/event.h"
%include "icsneo/communication/network.h"
%inline %{
static neomessage_can_t* neomessage_can_t_cast(neomessage_t* msg) {
return (neomessage_can_t*) msg;
}
static neomessage_eth_t* neomessage_eth_t_cast(neomessage_t* msg) {
return (neomessage_eth_t*) msg;
}
static neomessage_t* from_can_neomessage_t_cast(neomessage_can_t* msg) {
return (neomessage_t*) msg;
}
static neomessage_t* from_eth_neomessage_t_cast(neomessage_eth_t* msg) {
return (neomessage_t*) msg;
}
%}
%array_functions(neodevice_t, neodevice_t_array);
%array_functions(neoevent_t, neoevent_t_array);
%array_functions(neomessage_t, neomessage_t_array);
File diff suppressed because it is too large Load Diff
-425
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@@ -1,425 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class icsneocsharp {
public static void icsneo_findAllDevices(neodevice_t devices, ref int count) {
icsneocsharpPINVOKE.icsneo_findAllDevices(neodevice_t.getCPtr(devices), ref count);
}
public static void icsneo_freeUnconnectedDevices() {
icsneocsharpPINVOKE.icsneo_freeUnconnectedDevices();
}
public static bool icsneo_serialNumToString(uint num, System.Text.StringBuilder str, ref int count) {
bool ret = icsneocsharpPINVOKE.icsneo_serialNumToString(num, str, ref count);
return ret;
}
public static uint icsneo_serialStringToNum(System.Text.StringBuilder str) {
uint ret = icsneocsharpPINVOKE.icsneo_serialStringToNum(str);
return ret;
}
public static bool icsneo_isValidNeoDevice(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_isValidNeoDevice(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_openDevice(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_openDevice(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_closeDevice(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_closeDevice(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_isOpen(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_isOpen(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_goOnline(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_goOnline(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_goOffline(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_goOffline(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_isOnline(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_isOnline(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_enableMessagePolling(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_enableMessagePolling(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_disableMessagePolling(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_disableMessagePolling(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_isMessagePollingEnabled(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_isMessagePollingEnabled(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_getMessages(neodevice_t device, neomessage_t messages, ref int items, ulong timeout) {
bool ret = icsneocsharpPINVOKE.icsneo_getMessages(neodevice_t.getCPtr(device), neomessage_t.getCPtr(messages), ref items, timeout);
return ret;
}
public static uint icsneo_getPollingMessageLimit(neodevice_t device) {
uint ret = icsneocsharpPINVOKE.icsneo_getPollingMessageLimit(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_setPollingMessageLimit(neodevice_t device, uint newLimit) {
bool ret = icsneocsharpPINVOKE.icsneo_setPollingMessageLimit(neodevice_t.getCPtr(device), newLimit);
return ret;
}
public static bool icsneo_getProductName(neodevice_t device, System.Text.StringBuilder str, ref int maxLength) {
bool ret = icsneocsharpPINVOKE.icsneo_getProductName(neodevice_t.getCPtr(device), str, ref maxLength);
return ret;
}
public static bool icsneo_getProductNameForType(uint type, System.Text.StringBuilder str, ref int maxLength) {
bool ret = icsneocsharpPINVOKE.icsneo_getProductNameForType(type, str, ref maxLength);
return ret;
}
public static bool icsneo_settingsRefresh(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_settingsRefresh(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_settingsApply(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_settingsApply(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_settingsApplyTemporary(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_settingsApplyTemporary(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_settingsApplyDefaults(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_settingsApplyDefaults(neodevice_t.getCPtr(device));
return ret;
}
public static bool icsneo_settingsApplyDefaultsTemporary(neodevice_t device) {
bool ret = icsneocsharpPINVOKE.icsneo_settingsApplyDefaultsTemporary(neodevice_t.getCPtr(device));
return ret;
}
public static int icsneo_settingsReadStructure(neodevice_t device, SWIGTYPE_p_void structure, uint structureSize) {
int ret = icsneocsharpPINVOKE.icsneo_settingsReadStructure(neodevice_t.getCPtr(device), SWIGTYPE_p_void.getCPtr(structure), structureSize);
return ret;
}
public static bool icsneo_settingsApplyStructure(neodevice_t device, SWIGTYPE_p_void structure, uint structureSize) {
bool ret = icsneocsharpPINVOKE.icsneo_settingsApplyStructure(neodevice_t.getCPtr(device), SWIGTYPE_p_void.getCPtr(structure), structureSize);
return ret;
}
public static bool icsneo_settingsApplyStructureTemporary(neodevice_t device, SWIGTYPE_p_void structure, uint structureSize) {
bool ret = icsneocsharpPINVOKE.icsneo_settingsApplyStructureTemporary(neodevice_t.getCPtr(device), SWIGTYPE_p_void.getCPtr(structure), structureSize);
return ret;
}
public static long icsneo_getBaudrate(neodevice_t device, ushort netid) {
long ret = icsneocsharpPINVOKE.icsneo_getBaudrate(neodevice_t.getCPtr(device), netid);
return ret;
}
public static bool icsneo_setBaudrate(neodevice_t device, ushort netid, long newBaudrate) {
bool ret = icsneocsharpPINVOKE.icsneo_setBaudrate(neodevice_t.getCPtr(device), netid, newBaudrate);
return ret;
}
public static long icsneo_getFDBaudrate(neodevice_t device, ushort netid) {
long ret = icsneocsharpPINVOKE.icsneo_getFDBaudrate(neodevice_t.getCPtr(device), netid);
return ret;
}
public static bool icsneo_setFDBaudrate(neodevice_t device, ushort netid, long newBaudrate) {
bool ret = icsneocsharpPINVOKE.icsneo_setFDBaudrate(neodevice_t.getCPtr(device), netid, newBaudrate);
return ret;
}
public static bool icsneo_transmit(neodevice_t device, neomessage_t message) {
bool ret = icsneocsharpPINVOKE.icsneo_transmit(neodevice_t.getCPtr(device), neomessage_t.getCPtr(message));
return ret;
}
public static bool icsneo_transmitMessages(neodevice_t device, neomessage_t messages, uint count) {
bool ret = icsneocsharpPINVOKE.icsneo_transmitMessages(neodevice_t.getCPtr(device), neomessage_t.getCPtr(messages), count);
return ret;
}
public static void icsneo_setWriteBlocks(neodevice_t device, bool blocks) {
icsneocsharpPINVOKE.icsneo_setWriteBlocks(neodevice_t.getCPtr(device), blocks);
}
public static bool icsneo_describeDevice(neodevice_t device, System.Text.StringBuilder str, ref int maxLength) {
bool ret = icsneocsharpPINVOKE.icsneo_describeDevice(neodevice_t.getCPtr(device), str, ref maxLength);
return ret;
}
public static neoversion_t icsneo_getVersion() {
neoversion_t ret = new neoversion_t(icsneocsharpPINVOKE.icsneo_getVersion(), true);
return ret;
}
public static bool icsneo_getEvents(neoevent_t events, ref int size) {
bool ret = icsneocsharpPINVOKE.icsneo_getEvents(neoevent_t.getCPtr(events), ref size);
return ret;
}
public static bool icsneo_getDeviceEvents(neodevice_t device, neoevent_t events, ref int size) {
bool ret = icsneocsharpPINVOKE.icsneo_getDeviceEvents(neodevice_t.getCPtr(device), neoevent_t.getCPtr(events), ref size);
return ret;
}
public static bool icsneo_getLastError(neoevent_t error) {
bool ret = icsneocsharpPINVOKE.icsneo_getLastError(neoevent_t.getCPtr(error));
return ret;
}
public static void icsneo_discardAllEvents() {
icsneocsharpPINVOKE.icsneo_discardAllEvents();
}
public static void icsneo_discardDeviceEvents(neodevice_t device) {
icsneocsharpPINVOKE.icsneo_discardDeviceEvents(neodevice_t.getCPtr(device));
}
public static void icsneo_setEventLimit(uint newLimit) {
icsneocsharpPINVOKE.icsneo_setEventLimit(newLimit);
}
public static uint icsneo_getEventLimit() {
uint ret = icsneocsharpPINVOKE.icsneo_getEventLimit();
return ret;
}
public static bool icsneo_getSupportedDevices(SWIGTYPE_p_unsigned_int devices, ref int count) {
bool ret = icsneocsharpPINVOKE.icsneo_getSupportedDevices(SWIGTYPE_p_unsigned_int.getCPtr(devices), ref count);
return ret;
}
public static bool icsneo_getTimestampResolution(neodevice_t device, SWIGTYPE_p_unsigned_short resolution) {
bool ret = icsneocsharpPINVOKE.icsneo_getTimestampResolution(neodevice_t.getCPtr(device), SWIGTYPE_p_unsigned_short.getCPtr(resolution));
return ret;
}
public static neomessage_can_t neomessage_can_t_cast(neomessage_t msg) {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neomessage_can_t_cast(neomessage_t.getCPtr(msg));
neomessage_can_t ret = (cPtr == global::System.IntPtr.Zero) ? null : new neomessage_can_t(cPtr, false);
return ret;
}
public static neomessage_eth_t neomessage_eth_t_cast(neomessage_t msg) {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neomessage_eth_t_cast(neomessage_t.getCPtr(msg));
neomessage_eth_t ret = (cPtr == global::System.IntPtr.Zero) ? null : new neomessage_eth_t(cPtr, false);
return ret;
}
public static neomessage_t from_can_neomessage_t_cast(neomessage_can_t msg) {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.from_can_neomessage_t_cast(neomessage_can_t.getCPtr(msg));
neomessage_t ret = (cPtr == global::System.IntPtr.Zero) ? null : new neomessage_t(cPtr, false);
return ret;
}
public static neomessage_t from_eth_neomessage_t_cast(neomessage_eth_t msg) {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.from_eth_neomessage_t_cast(neomessage_eth_t.getCPtr(msg));
neomessage_t ret = (cPtr == global::System.IntPtr.Zero) ? null : new neomessage_t(cPtr, false);
return ret;
}
public static neodevice_t new_neodevice_t_array(int nelements) {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.new_neodevice_t_array(nelements);
neodevice_t ret = (cPtr == global::System.IntPtr.Zero) ? null : new neodevice_t(cPtr, false);
return ret;
}
public static void delete_neodevice_t_array(neodevice_t ary) {
icsneocsharpPINVOKE.delete_neodevice_t_array(neodevice_t.getCPtr(ary));
}
public static neodevice_t neodevice_t_array_getitem(neodevice_t ary, int index) {
neodevice_t ret = new neodevice_t(icsneocsharpPINVOKE.neodevice_t_array_getitem(neodevice_t.getCPtr(ary), index), true);
return ret;
}
public static void neodevice_t_array_setitem(neodevice_t ary, int index, neodevice_t value) {
icsneocsharpPINVOKE.neodevice_t_array_setitem(neodevice_t.getCPtr(ary), index, neodevice_t.getCPtr(value));
if (icsneocsharpPINVOKE.SWIGPendingException.Pending) throw icsneocsharpPINVOKE.SWIGPendingException.Retrieve();
}
public static neoevent_t new_neoevent_t_array(int nelements) {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.new_neoevent_t_array(nelements);
neoevent_t ret = (cPtr == global::System.IntPtr.Zero) ? null : new neoevent_t(cPtr, false);
return ret;
}
public static void delete_neoevent_t_array(neoevent_t ary) {
icsneocsharpPINVOKE.delete_neoevent_t_array(neoevent_t.getCPtr(ary));
}
public static neoevent_t neoevent_t_array_getitem(neoevent_t ary, int index) {
neoevent_t ret = new neoevent_t(icsneocsharpPINVOKE.neoevent_t_array_getitem(neoevent_t.getCPtr(ary), index), true);
return ret;
}
public static void neoevent_t_array_setitem(neoevent_t ary, int index, neoevent_t value) {
icsneocsharpPINVOKE.neoevent_t_array_setitem(neoevent_t.getCPtr(ary), index, neoevent_t.getCPtr(value));
if (icsneocsharpPINVOKE.SWIGPendingException.Pending) throw icsneocsharpPINVOKE.SWIGPendingException.Retrieve();
}
public static neomessage_t new_neomessage_t_array(int nelements) {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.new_neomessage_t_array(nelements);
neomessage_t ret = (cPtr == global::System.IntPtr.Zero) ? null : new neomessage_t(cPtr, false);
return ret;
}
public static void delete_neomessage_t_array(neomessage_t ary) {
icsneocsharpPINVOKE.delete_neomessage_t_array(neomessage_t.getCPtr(ary));
}
public static neomessage_t neomessage_t_array_getitem(neomessage_t ary, int index) {
neomessage_t ret = new neomessage_t(icsneocsharpPINVOKE.neomessage_t_array_getitem(neomessage_t.getCPtr(ary), index), true);
return ret;
}
public static void neomessage_t_array_setitem(neomessage_t ary, int index, neomessage_t value) {
icsneocsharpPINVOKE.neomessage_t_array_setitem(neomessage_t.getCPtr(ary), index, neomessage_t.getCPtr(value));
if (icsneocsharpPINVOKE.SWIGPendingException.Pending) throw icsneocsharpPINVOKE.SWIGPendingException.Retrieve();
}
public static readonly int ICSNEO_DEVICETYPE_LONGEST_NAME = icsneocsharpPINVOKE.ICSNEO_DEVICETYPE_LONGEST_NAME_get();
public static readonly int ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION = icsneocsharpPINVOKE.ICSNEO_DEVICETYPE_LONGEST_DESCRIPTION_get();
public static readonly int ICSNEO_NETID_DEVICE = icsneocsharpPINVOKE.ICSNEO_NETID_DEVICE_get();
public static readonly int ICSNEO_NETID_HSCAN = icsneocsharpPINVOKE.ICSNEO_NETID_HSCAN_get();
public static readonly int ICSNEO_NETID_MSCAN = icsneocsharpPINVOKE.ICSNEO_NETID_MSCAN_get();
public static readonly int ICSNEO_NETID_SWCAN = icsneocsharpPINVOKE.ICSNEO_NETID_SWCAN_get();
public static readonly int ICSNEO_NETID_LSFTCAN = icsneocsharpPINVOKE.ICSNEO_NETID_LSFTCAN_get();
public static readonly int ICSNEO_NETID_FORDSCP = icsneocsharpPINVOKE.ICSNEO_NETID_FORDSCP_get();
public static readonly int ICSNEO_NETID_J1708 = icsneocsharpPINVOKE.ICSNEO_NETID_J1708_get();
public static readonly int ICSNEO_NETID_AUX = icsneocsharpPINVOKE.ICSNEO_NETID_AUX_get();
public static readonly int ICSNEO_NETID_J1850VPW = icsneocsharpPINVOKE.ICSNEO_NETID_J1850VPW_get();
public static readonly int ICSNEO_NETID_ISO = icsneocsharpPINVOKE.ICSNEO_NETID_ISO_get();
public static readonly int ICSNEO_NETID_MAIN51 = icsneocsharpPINVOKE.ICSNEO_NETID_MAIN51_get();
public static readonly int ICSNEO_NETID_RED = icsneocsharpPINVOKE.ICSNEO_NETID_RED_get();
public static readonly int ICSNEO_NETID_SCI = icsneocsharpPINVOKE.ICSNEO_NETID_SCI_get();
public static readonly int ICSNEO_NETID_ISO2 = icsneocsharpPINVOKE.ICSNEO_NETID_ISO2_get();
public static readonly int ICSNEO_NETID_ISO14230 = icsneocsharpPINVOKE.ICSNEO_NETID_ISO14230_get();
public static readonly int ICSNEO_NETID_LIN = icsneocsharpPINVOKE.ICSNEO_NETID_LIN_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET1 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET1_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET2 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET2_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET3 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET3_get();
public static readonly int ICSNEO_NETID_RED_EXT_MEMORYREAD = icsneocsharpPINVOKE.ICSNEO_NETID_RED_EXT_MEMORYREAD_get();
public static readonly int ICSNEO_NETID_RED_INT_MEMORYREAD = icsneocsharpPINVOKE.ICSNEO_NETID_RED_INT_MEMORYREAD_get();
public static readonly int ICSNEO_NETID_RED_DFLASH_READ = icsneocsharpPINVOKE.ICSNEO_NETID_RED_DFLASH_READ_get();
public static readonly int ICSNEO_NETID_RED_SDCARD_READ = icsneocsharpPINVOKE.ICSNEO_NETID_RED_SDCARD_READ_get();
public static readonly int ICSNEO_NETID_CAN_ERRBITS = icsneocsharpPINVOKE.ICSNEO_NETID_CAN_ERRBITS_get();
public static readonly int ICSNEO_NETID_RED_DFLASH_WRITE_DONE = icsneocsharpPINVOKE.ICSNEO_NETID_RED_DFLASH_WRITE_DONE_get();
public static readonly int ICSNEO_NETID_RED_WAVE_CAN1_LOGICAL = icsneocsharpPINVOKE.ICSNEO_NETID_RED_WAVE_CAN1_LOGICAL_get();
public static readonly int ICSNEO_NETID_RED_WAVE_CAN2_LOGICAL = icsneocsharpPINVOKE.ICSNEO_NETID_RED_WAVE_CAN2_LOGICAL_get();
public static readonly int ICSNEO_NETID_RED_WAVE_LIN1_LOGICAL = icsneocsharpPINVOKE.ICSNEO_NETID_RED_WAVE_LIN1_LOGICAL_get();
public static readonly int ICSNEO_NETID_RED_WAVE_LIN2_LOGICAL = icsneocsharpPINVOKE.ICSNEO_NETID_RED_WAVE_LIN2_LOGICAL_get();
public static readonly int ICSNEO_NETID_RED_WAVE_LIN1_ANALOG = icsneocsharpPINVOKE.ICSNEO_NETID_RED_WAVE_LIN1_ANALOG_get();
public static readonly int ICSNEO_NETID_RED_WAVE_LIN2_ANALOG = icsneocsharpPINVOKE.ICSNEO_NETID_RED_WAVE_LIN2_ANALOG_get();
public static readonly int ICSNEO_NETID_RED_WAVE_MISC_ANALOG = icsneocsharpPINVOKE.ICSNEO_NETID_RED_WAVE_MISC_ANALOG_get();
public static readonly int ICSNEO_NETID_RED_WAVE_MISCDIO2_LOGICAL = icsneocsharpPINVOKE.ICSNEO_NETID_RED_WAVE_MISCDIO2_LOGICAL_get();
public static readonly int ICSNEO_NETID_RED_NETWORK_COM_ENABLE_EX = icsneocsharpPINVOKE.ICSNEO_NETID_RED_NETWORK_COM_ENABLE_EX_get();
public static readonly int ICSNEO_NETID_RED_NEOVI_NETWORK = icsneocsharpPINVOKE.ICSNEO_NETID_RED_NEOVI_NETWORK_get();
public static readonly int ICSNEO_NETID_RED_READ_BAUD_SETTINGS = icsneocsharpPINVOKE.ICSNEO_NETID_RED_READ_BAUD_SETTINGS_get();
public static readonly int ICSNEO_NETID_RED_OLDFORMAT = icsneocsharpPINVOKE.ICSNEO_NETID_RED_OLDFORMAT_get();
public static readonly int ICSNEO_NETID_RED_SCOPE_CAPTURE = icsneocsharpPINVOKE.ICSNEO_NETID_RED_SCOPE_CAPTURE_get();
public static readonly int ICSNEO_NETID_RED_HARDWARE_EXCEP = icsneocsharpPINVOKE.ICSNEO_NETID_RED_HARDWARE_EXCEP_get();
public static readonly int ICSNEO_NETID_RED_GET_RTC = icsneocsharpPINVOKE.ICSNEO_NETID_RED_GET_RTC_get();
public static readonly int ICSNEO_NETID_ISO3 = icsneocsharpPINVOKE.ICSNEO_NETID_ISO3_get();
public static readonly int ICSNEO_NETID_HSCAN2 = icsneocsharpPINVOKE.ICSNEO_NETID_HSCAN2_get();
public static readonly int ICSNEO_NETID_HSCAN3 = icsneocsharpPINVOKE.ICSNEO_NETID_HSCAN3_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET4 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET4_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET5 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET5_get();
public static readonly int ICSNEO_NETID_ISO4 = icsneocsharpPINVOKE.ICSNEO_NETID_ISO4_get();
public static readonly int ICSNEO_NETID_LIN2 = icsneocsharpPINVOKE.ICSNEO_NETID_LIN2_get();
public static readonly int ICSNEO_NETID_LIN3 = icsneocsharpPINVOKE.ICSNEO_NETID_LIN3_get();
public static readonly int ICSNEO_NETID_LIN4 = icsneocsharpPINVOKE.ICSNEO_NETID_LIN4_get();
public static readonly int ICSNEO_NETID_RED_APP_ERROR = icsneocsharpPINVOKE.ICSNEO_NETID_RED_APP_ERROR_get();
public static readonly int ICSNEO_NETID_CGI = icsneocsharpPINVOKE.ICSNEO_NETID_CGI_get();
public static readonly int ICSNEO_NETID_RESET_STATUS = icsneocsharpPINVOKE.ICSNEO_NETID_RESET_STATUS_get();
public static readonly int ICSNEO_NETID_FB_STATUS = icsneocsharpPINVOKE.ICSNEO_NETID_FB_STATUS_get();
public static readonly int ICSNEO_NETID_APP_SIGNAL_STATUS = icsneocsharpPINVOKE.ICSNEO_NETID_APP_SIGNAL_STATUS_get();
public static readonly int ICSNEO_NETID_READ_DATALINK_CM_TX_MSG = icsneocsharpPINVOKE.ICSNEO_NETID_READ_DATALINK_CM_TX_MSG_get();
public static readonly int ICSNEO_NETID_READ_DATALINK_CM_RX_MSG = icsneocsharpPINVOKE.ICSNEO_NETID_READ_DATALINK_CM_RX_MSG_get();
public static readonly int ICSNEO_NETID_LOGGING_OVERFLOW = icsneocsharpPINVOKE.ICSNEO_NETID_LOGGING_OVERFLOW_get();
public static readonly int ICSNEO_NETID_READ_SETTINGS = icsneocsharpPINVOKE.ICSNEO_NETID_READ_SETTINGS_get();
public static readonly int ICSNEO_NETID_HSCAN4 = icsneocsharpPINVOKE.ICSNEO_NETID_HSCAN4_get();
public static readonly int ICSNEO_NETID_HSCAN5 = icsneocsharpPINVOKE.ICSNEO_NETID_HSCAN5_get();
public static readonly int ICSNEO_NETID_RS232 = icsneocsharpPINVOKE.ICSNEO_NETID_RS232_get();
public static readonly int ICSNEO_NETID_UART = icsneocsharpPINVOKE.ICSNEO_NETID_UART_get();
public static readonly int ICSNEO_NETID_UART2 = icsneocsharpPINVOKE.ICSNEO_NETID_UART2_get();
public static readonly int ICSNEO_NETID_UART3 = icsneocsharpPINVOKE.ICSNEO_NETID_UART3_get();
public static readonly int ICSNEO_NETID_UART4 = icsneocsharpPINVOKE.ICSNEO_NETID_UART4_get();
public static readonly int ICSNEO_NETID_SWCAN2 = icsneocsharpPINVOKE.ICSNEO_NETID_SWCAN2_get();
public static readonly int ICSNEO_NETID_ETHERNET_DAQ = icsneocsharpPINVOKE.ICSNEO_NETID_ETHERNET_DAQ_get();
public static readonly int ICSNEO_NETID_DATA_TO_HOST = icsneocsharpPINVOKE.ICSNEO_NETID_DATA_TO_HOST_get();
public static readonly int ICSNEO_NETID_TEXTAPI_TO_HOST = icsneocsharpPINVOKE.ICSNEO_NETID_TEXTAPI_TO_HOST_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET6 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET6_get();
public static readonly int ICSNEO_NETID_RED_VBAT = icsneocsharpPINVOKE.ICSNEO_NETID_RED_VBAT_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET7 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET7_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET8 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET8_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET9 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET9_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET10 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET10_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET11 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET11_get();
public static readonly int ICSNEO_NETID_FLEXRAY1A = icsneocsharpPINVOKE.ICSNEO_NETID_FLEXRAY1A_get();
public static readonly int ICSNEO_NETID_FLEXRAY1B = icsneocsharpPINVOKE.ICSNEO_NETID_FLEXRAY1B_get();
public static readonly int ICSNEO_NETID_FLEXRAY2A = icsneocsharpPINVOKE.ICSNEO_NETID_FLEXRAY2A_get();
public static readonly int ICSNEO_NETID_FLEXRAY2B = icsneocsharpPINVOKE.ICSNEO_NETID_FLEXRAY2B_get();
public static readonly int ICSNEO_NETID_LIN5 = icsneocsharpPINVOKE.ICSNEO_NETID_LIN5_get();
public static readonly int ICSNEO_NETID_FLEXRAY = icsneocsharpPINVOKE.ICSNEO_NETID_FLEXRAY_get();
public static readonly int ICSNEO_NETID_FLEXRAY2 = icsneocsharpPINVOKE.ICSNEO_NETID_FLEXRAY2_get();
public static readonly int ICSNEO_NETID_OP_ETHERNET12 = icsneocsharpPINVOKE.ICSNEO_NETID_OP_ETHERNET12_get();
public static readonly int ICSNEO_NETID_MOST25 = icsneocsharpPINVOKE.ICSNEO_NETID_MOST25_get();
public static readonly int ICSNEO_NETID_MOST50 = icsneocsharpPINVOKE.ICSNEO_NETID_MOST50_get();
public static readonly int ICSNEO_NETID_MOST150 = icsneocsharpPINVOKE.ICSNEO_NETID_MOST150_get();
public static readonly int ICSNEO_NETID_ETHERNET = icsneocsharpPINVOKE.ICSNEO_NETID_ETHERNET_get();
public static readonly int ICSNEO_NETID_GMFSA = icsneocsharpPINVOKE.ICSNEO_NETID_GMFSA_get();
public static readonly int ICSNEO_NETID_TCP = icsneocsharpPINVOKE.ICSNEO_NETID_TCP_get();
public static readonly int ICSNEO_NETID_HSCAN6 = icsneocsharpPINVOKE.ICSNEO_NETID_HSCAN6_get();
public static readonly int ICSNEO_NETID_HSCAN7 = icsneocsharpPINVOKE.ICSNEO_NETID_HSCAN7_get();
public static readonly int ICSNEO_NETID_LIN6 = icsneocsharpPINVOKE.ICSNEO_NETID_LIN6_get();
public static readonly int ICSNEO_NETID_LSFTCAN2 = icsneocsharpPINVOKE.ICSNEO_NETID_LSFTCAN2_get();
public static readonly int ICSNEO_NETID_HW_COM_LATENCY_TEST = icsneocsharpPINVOKE.ICSNEO_NETID_HW_COM_LATENCY_TEST_get();
public static readonly int ICSNEO_NETID_DEVICE_STATUS = icsneocsharpPINVOKE.ICSNEO_NETID_DEVICE_STATUS_get();
public static readonly int ICSNEO_NETID_ANY = icsneocsharpPINVOKE.ICSNEO_NETID_ANY_get();
public static readonly int ICSNEO_NETID_INVALID = icsneocsharpPINVOKE.ICSNEO_NETID_INVALID_get();
public static readonly int ICSNEO_NETWORK_TYPE_INVALID = icsneocsharpPINVOKE.ICSNEO_NETWORK_TYPE_INVALID_get();
public static readonly int ICSNEO_NETWORK_TYPE_INTERNAL = icsneocsharpPINVOKE.ICSNEO_NETWORK_TYPE_INTERNAL_get();
public static readonly int ICSNEO_NETWORK_TYPE_CAN = icsneocsharpPINVOKE.ICSNEO_NETWORK_TYPE_CAN_get();
public static readonly int ICSNEO_NETWORK_TYPE_LIN = icsneocsharpPINVOKE.ICSNEO_NETWORK_TYPE_LIN_get();
public static readonly int ICSNEO_NETWORK_TYPE_FLEXRAY = icsneocsharpPINVOKE.ICSNEO_NETWORK_TYPE_FLEXRAY_get();
public static readonly int ICSNEO_NETWORK_TYPE_MOST = icsneocsharpPINVOKE.ICSNEO_NETWORK_TYPE_MOST_get();
public static readonly int ICSNEO_NETWORK_TYPE_ETHERNET = icsneocsharpPINVOKE.ICSNEO_NETWORK_TYPE_ETHERNET_get();
public static readonly int ICSNEO_NETWORK_TYPE_ANY = icsneocsharpPINVOKE.ICSNEO_NETWORK_TYPE_ANY_get();
public static readonly int ICSNEO_NETWORK_TYPE_OTHER = icsneocsharpPINVOKE.ICSNEO_NETWORK_TYPE_OTHER_get();
}
File diff suppressed because it is too large Load Diff
@@ -1,9 +0,0 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<OutputType>Exe</OutputType>
<TargetFramework>netcoreapp2.2</TargetFramework>
<RootNamespace>libicsneocsharp_example</RootNamespace>
</PropertyGroup>
</Project>
@@ -1,25 +0,0 @@

Microsoft Visual Studio Solution File, Format Version 12.00
# Visual Studio Version 16
VisualStudioVersion = 16.0.28922.388
MinimumVisualStudioVersion = 10.0.40219.1
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "libicsneocsharp-example", "libicsneocsharp-example.csproj", "{391FCF02-39BB-4C81-AE99-6785A7EA13A1}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Any CPU = Debug|Any CPU
Release|Any CPU = Release|Any CPU
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{391FCF02-39BB-4C81-AE99-6785A7EA13A1}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{391FCF02-39BB-4C81-AE99-6785A7EA13A1}.Debug|Any CPU.Build.0 = Debug|Any CPU
{391FCF02-39BB-4C81-AE99-6785A7EA13A1}.Release|Any CPU.ActiveCfg = Release|Any CPU
{391FCF02-39BB-4C81-AE99-6785A7EA13A1}.Release|Any CPU.Build.0 = Release|Any CPU
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
EndGlobalSection
GlobalSection(ExtensibilityGlobals) = postSolution
SolutionGuid = {9610ED61-57FA-46BD-A071-DC7DB7BAC3A9}
EndGlobalSection
EndGlobal
-90
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@@ -1,90 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class neodevice_t : global::System.IDisposable {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
protected bool swigCMemOwn;
internal neodevice_t(global::System.IntPtr cPtr, bool cMemoryOwn) {
swigCMemOwn = cMemoryOwn;
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(neodevice_t obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
~neodevice_t() {
Dispose(false);
}
public void Dispose() {
Dispose(true);
global::System.GC.SuppressFinalize(this);
}
protected virtual void Dispose(bool disposing) {
lock(this) {
if (swigCPtr.Handle != global::System.IntPtr.Zero) {
if (swigCMemOwn) {
swigCMemOwn = false;
icsneocsharpPINVOKE.delete_neodevice_t(swigCPtr);
}
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
}
}
public SWIGTYPE_p_void device {
set {
icsneocsharpPINVOKE.neodevice_t_device_set(swigCPtr, SWIGTYPE_p_void.getCPtr(value));
}
get {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neodevice_t_device_get(swigCPtr);
SWIGTYPE_p_void ret = (cPtr == global::System.IntPtr.Zero) ? null : new SWIGTYPE_p_void(cPtr, false);
return ret;
}
}
public int handle {
set {
icsneocsharpPINVOKE.neodevice_t_handle_set(swigCPtr, value);
}
get {
int ret = icsneocsharpPINVOKE.neodevice_t_handle_get(swigCPtr);
return ret;
}
}
public uint type {
set {
icsneocsharpPINVOKE.neodevice_t_type_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neodevice_t_type_get(swigCPtr);
return ret;
}
}
public string serial {
set {
icsneocsharpPINVOKE.neodevice_t_serial_set(swigCPtr, value);
}
get {
string ret = icsneocsharpPINVOKE.neodevice_t_serial_get(swigCPtr);
return ret;
}
}
public neodevice_t() : this(icsneocsharpPINVOKE.new_neodevice_t(), true) {
}
}
-112
View File
@@ -1,112 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class neoevent_t : global::System.IDisposable {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
protected bool swigCMemOwn;
internal neoevent_t(global::System.IntPtr cPtr, bool cMemoryOwn) {
swigCMemOwn = cMemoryOwn;
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(neoevent_t obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
~neoevent_t() {
Dispose(false);
}
public void Dispose() {
Dispose(true);
global::System.GC.SuppressFinalize(this);
}
protected virtual void Dispose(bool disposing) {
lock(this) {
if (swigCPtr.Handle != global::System.IntPtr.Zero) {
if (swigCMemOwn) {
swigCMemOwn = false;
icsneocsharpPINVOKE.delete_neoevent_t(swigCPtr);
}
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
}
}
public string description {
set {
icsneocsharpPINVOKE.neoevent_t_description_set(swigCPtr, value);
}
get {
string ret = icsneocsharpPINVOKE.neoevent_t_description_get(swigCPtr);
return ret;
}
}
public SWIGTYPE_p_time_t timestamp {
set {
icsneocsharpPINVOKE.neoevent_t_timestamp_set(swigCPtr, SWIGTYPE_p_time_t.getCPtr(value));
if (icsneocsharpPINVOKE.SWIGPendingException.Pending) throw icsneocsharpPINVOKE.SWIGPendingException.Retrieve();
}
get {
SWIGTYPE_p_time_t ret = new SWIGTYPE_p_time_t(icsneocsharpPINVOKE.neoevent_t_timestamp_get(swigCPtr), true);
if (icsneocsharpPINVOKE.SWIGPendingException.Pending) throw icsneocsharpPINVOKE.SWIGPendingException.Retrieve();
return ret;
}
}
public uint eventNumber {
set {
icsneocsharpPINVOKE.neoevent_t_eventNumber_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neoevent_t_eventNumber_get(swigCPtr);
return ret;
}
}
public byte severity {
set {
icsneocsharpPINVOKE.neoevent_t_severity_set(swigCPtr, value);
}
get {
byte ret = icsneocsharpPINVOKE.neoevent_t_severity_get(swigCPtr);
return ret;
}
}
public string serial {
set {
icsneocsharpPINVOKE.neoevent_t_serial_set(swigCPtr, value);
}
get {
string ret = icsneocsharpPINVOKE.neoevent_t_serial_get(swigCPtr);
return ret;
}
}
public SWIGTYPE_p_unsigned_char reserved {
set {
icsneocsharpPINVOKE.neoevent_t_reserved_set(swigCPtr, SWIGTYPE_p_unsigned_char.getCPtr(value));
}
get {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neoevent_t_reserved_get(swigCPtr);
SWIGTYPE_p_unsigned_char ret = (cPtr == global::System.IntPtr.Zero) ? null : new SWIGTYPE_p_unsigned_char(cPtr, false);
return ret;
}
}
public neoevent_t() : this(icsneocsharpPINVOKE.new_neoevent_t(), true) {
}
}
-155
View File
@@ -1,155 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class neomessage_can_t : global::System.IDisposable {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
protected bool swigCMemOwn;
internal neomessage_can_t(global::System.IntPtr cPtr, bool cMemoryOwn) {
swigCMemOwn = cMemoryOwn;
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(neomessage_can_t obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
~neomessage_can_t() {
Dispose(false);
}
public void Dispose() {
Dispose(true);
global::System.GC.SuppressFinalize(this);
}
protected virtual void Dispose(bool disposing) {
lock(this) {
if (swigCPtr.Handle != global::System.IntPtr.Zero) {
if (swigCMemOwn) {
swigCMemOwn = false;
icsneocsharpPINVOKE.delete_neomessage_can_t(swigCPtr);
}
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
}
}
public neomessage_statusbitfield_t status {
set {
icsneocsharpPINVOKE.neomessage_can_t_status_set(swigCPtr, neomessage_statusbitfield_t.getCPtr(value));
}
get {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neomessage_can_t_status_get(swigCPtr);
neomessage_statusbitfield_t ret = (cPtr == global::System.IntPtr.Zero) ? null : new neomessage_statusbitfield_t(cPtr, false);
return ret;
}
}
public ulong timestamp {
set {
icsneocsharpPINVOKE.neomessage_can_t_timestamp_set(swigCPtr, value);
}
get {
ulong ret = icsneocsharpPINVOKE.neomessage_can_t_timestamp_get(swigCPtr);
return ret;
}
}
public ulong timestampReserved {
set {
icsneocsharpPINVOKE.neomessage_can_t_timestampReserved_set(swigCPtr, value);
}
get {
ulong ret = icsneocsharpPINVOKE.neomessage_can_t_timestampReserved_get(swigCPtr);
return ret;
}
}
public byte[] data {
set {
icsneocsharpPINVOKE.neomessage_can_t_data_set(swigCPtr, value);
}
get {
byte[] ret = new byte[this.length];
System.IntPtr data = icsneocsharpPINVOKE.neomessage_can_t_data_get(swigCPtr);
System.Runtime.InteropServices.Marshal.Copy(data, ret, 0, (int)this.length);
return ret;
}
}
public uint length {
set {
icsneocsharpPINVOKE.neomessage_can_t_length_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_can_t_length_get(swigCPtr);
return ret;
}
}
public uint arbid {
set {
icsneocsharpPINVOKE.neomessage_can_t_arbid_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_can_t_arbid_get(swigCPtr);
return ret;
}
}
public ushort netid {
set {
icsneocsharpPINVOKE.neomessage_can_t_netid_set(swigCPtr, value);
}
get {
ushort ret = icsneocsharpPINVOKE.neomessage_can_t_netid_get(swigCPtr);
return ret;
}
}
public byte type {
set {
icsneocsharpPINVOKE.neomessage_can_t_type_set(swigCPtr, value);
}
get {
byte ret = icsneocsharpPINVOKE.neomessage_can_t_type_get(swigCPtr);
return ret;
}
}
public byte dlcOnWire {
set {
icsneocsharpPINVOKE.neomessage_can_t_dlcOnWire_set(swigCPtr, value);
}
get {
byte ret = icsneocsharpPINVOKE.neomessage_can_t_dlcOnWire_get(swigCPtr);
return ret;
}
}
public SWIGTYPE_p_unsigned_char reserved {
set {
icsneocsharpPINVOKE.neomessage_can_t_reserved_set(swigCPtr, SWIGTYPE_p_unsigned_char.getCPtr(value));
}
get {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neomessage_can_t_reserved_get(swigCPtr);
SWIGTYPE_p_unsigned_char ret = (cPtr == global::System.IntPtr.Zero) ? null : new SWIGTYPE_p_unsigned_char(cPtr, false);
return ret;
}
}
public neomessage_can_t() : this(icsneocsharpPINVOKE.new_neomessage_can_t(), true) {
}
}
-156
View File
@@ -1,156 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class neomessage_eth_t : global::System.IDisposable {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
protected bool swigCMemOwn;
internal neomessage_eth_t(global::System.IntPtr cPtr, bool cMemoryOwn) {
swigCMemOwn = cMemoryOwn;
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(neomessage_eth_t obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
~neomessage_eth_t() {
Dispose(false);
}
public void Dispose() {
Dispose(true);
global::System.GC.SuppressFinalize(this);
}
protected virtual void Dispose(bool disposing) {
lock(this) {
if (swigCPtr.Handle != global::System.IntPtr.Zero) {
if (swigCMemOwn) {
swigCMemOwn = false;
icsneocsharpPINVOKE.delete_neomessage_eth_t(swigCPtr);
}
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
}
}
public neomessage_statusbitfield_t status {
set {
icsneocsharpPINVOKE.neomessage_eth_t_status_set(swigCPtr, neomessage_statusbitfield_t.getCPtr(value));
}
get {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neomessage_eth_t_status_get(swigCPtr);
neomessage_statusbitfield_t ret = (cPtr == global::System.IntPtr.Zero) ? null : new neomessage_statusbitfield_t(cPtr, false);
return ret;
}
}
public ulong timestamp {
set {
icsneocsharpPINVOKE.neomessage_eth_t_timestamp_set(swigCPtr, value);
}
get {
ulong ret = icsneocsharpPINVOKE.neomessage_eth_t_timestamp_get(swigCPtr);
return ret;
}
}
public ulong timestampReserved {
set {
icsneocsharpPINVOKE.neomessage_eth_t_timestampReserved_set(swigCPtr, value);
}
get {
ulong ret = icsneocsharpPINVOKE.neomessage_eth_t_timestampReserved_get(swigCPtr);
return ret;
}
}
public byte[] data {
set {
icsneocsharpPINVOKE.neomessage_eth_t_data_set(swigCPtr, value);
}
get {
byte[] ret = new byte[this.length];
System.IntPtr data = icsneocsharpPINVOKE.neomessage_eth_t_data_get(swigCPtr);
System.Runtime.InteropServices.Marshal.Copy(data, ret, 0, (int)this.length);
return ret;
}
}
public uint length {
set {
icsneocsharpPINVOKE.neomessage_eth_t_length_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_eth_t_length_get(swigCPtr);
return ret;
}
}
public byte preemptionFlags {
set {
icsneocsharpPINVOKE.neomessage_eth_t_preemptionFlags_set(swigCPtr, value);
}
get {
byte ret = icsneocsharpPINVOKE.neomessage_eth_t_preemptionFlags_get(swigCPtr);
return ret;
}
}
public SWIGTYPE_p_unsigned_char reservedHeader {
set {
icsneocsharpPINVOKE.neomessage_eth_t_reservedHeader_set(swigCPtr, SWIGTYPE_p_unsigned_char.getCPtr(value));
}
get {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neomessage_eth_t_reservedHeader_get(swigCPtr);
SWIGTYPE_p_unsigned_char ret = (cPtr == global::System.IntPtr.Zero) ? null : new SWIGTYPE_p_unsigned_char(cPtr, false);
return ret;
}
}
public ushort netid {
set {
icsneocsharpPINVOKE.neomessage_eth_t_netid_set(swigCPtr, value);
}
get {
ushort ret = icsneocsharpPINVOKE.neomessage_eth_t_netid_get(swigCPtr);
return ret;
}
}
public byte type {
set {
icsneocsharpPINVOKE.neomessage_eth_t_type_set(swigCPtr, value);
}
get {
byte ret = icsneocsharpPINVOKE.neomessage_eth_t_type_get(swigCPtr);
return ret;
}
}
public SWIGTYPE_p_unsigned_char reserved {
set {
icsneocsharpPINVOKE.neomessage_eth_t_reserved_set(swigCPtr, SWIGTYPE_p_unsigned_char.getCPtr(value));
}
get {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neomessage_eth_t_reserved_get(swigCPtr);
SWIGTYPE_p_unsigned_char ret = (cPtr == global::System.IntPtr.Zero) ? null : new SWIGTYPE_p_unsigned_char(cPtr, false);
return ret;
}
}
public neomessage_eth_t() : this(icsneocsharpPINVOKE.new_neomessage_eth_t(), true) {
}
}
@@ -1,610 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class neomessage_statusbitfield_t : global::System.IDisposable {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
protected bool swigCMemOwn;
internal neomessage_statusbitfield_t(global::System.IntPtr cPtr, bool cMemoryOwn) {
swigCMemOwn = cMemoryOwn;
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(neomessage_statusbitfield_t obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
~neomessage_statusbitfield_t() {
Dispose(false);
}
public void Dispose() {
Dispose(true);
global::System.GC.SuppressFinalize(this);
}
protected virtual void Dispose(bool disposing) {
lock(this) {
if (swigCPtr.Handle != global::System.IntPtr.Zero) {
if (swigCMemOwn) {
swigCMemOwn = false;
icsneocsharpPINVOKE.delete_neomessage_statusbitfield_t(swigCPtr);
}
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
}
}
public uint globalError {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_globalError_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_globalError_get(swigCPtr);
return ret;
}
}
public uint transmitMessage {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_transmitMessage_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_transmitMessage_get(swigCPtr);
return ret;
}
}
public uint extendedFrame {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_extendedFrame_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_extendedFrame_get(swigCPtr);
return ret;
}
}
public uint remoteFrame {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_remoteFrame_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_remoteFrame_get(swigCPtr);
return ret;
}
}
public uint crcError {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_crcError_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_crcError_get(swigCPtr);
return ret;
}
}
public uint canErrorPassive {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_canErrorPassive_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_canErrorPassive_get(swigCPtr);
return ret;
}
}
public uint incompleteFrame {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_incompleteFrame_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_incompleteFrame_get(swigCPtr);
return ret;
}
}
public uint lostArbitration {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_lostArbitration_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_lostArbitration_get(swigCPtr);
return ret;
}
}
public uint undefinedError {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_undefinedError_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_undefinedError_get(swigCPtr);
return ret;
}
}
public uint canBusOff {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_canBusOff_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_canBusOff_get(swigCPtr);
return ret;
}
}
public uint canErrorWarning {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_canErrorWarning_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_canErrorWarning_get(swigCPtr);
return ret;
}
}
public uint canBusShortedPlus {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_canBusShortedPlus_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_canBusShortedPlus_get(swigCPtr);
return ret;
}
}
public uint canBusShortedGround {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_canBusShortedGround_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_canBusShortedGround_get(swigCPtr);
return ret;
}
}
public uint checksumError {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_checksumError_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_checksumError_get(swigCPtr);
return ret;
}
}
public uint badMessageBitTimeError {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_badMessageBitTimeError_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_badMessageBitTimeError_get(swigCPtr);
return ret;
}
}
public uint ifrData {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_ifrData_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_ifrData_get(swigCPtr);
return ret;
}
}
public uint hardwareCommError {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_hardwareCommError_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_hardwareCommError_get(swigCPtr);
return ret;
}
}
public uint expectedLengthError {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_expectedLengthError_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_expectedLengthError_get(swigCPtr);
return ret;
}
}
public uint incomingNoMatch {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_incomingNoMatch_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_incomingNoMatch_get(swigCPtr);
return ret;
}
}
public uint statusBreak {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_statusBreak_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_statusBreak_get(swigCPtr);
return ret;
}
}
public uint avsiRecOverflow {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_avsiRecOverflow_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_avsiRecOverflow_get(swigCPtr);
return ret;
}
}
public uint testTrigger {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_testTrigger_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_testTrigger_get(swigCPtr);
return ret;
}
}
public uint audioComment {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_audioComment_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_audioComment_get(swigCPtr);
return ret;
}
}
public uint gpsData {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_gpsData_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_gpsData_get(swigCPtr);
return ret;
}
}
public uint analogDigitalInput {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_analogDigitalInput_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_analogDigitalInput_get(swigCPtr);
return ret;
}
}
public uint textComment {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_textComment_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_textComment_get(swigCPtr);
return ret;
}
}
public uint networkMessageType {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_networkMessageType_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_networkMessageType_get(swigCPtr);
return ret;
}
}
public uint vsiTXUnderrun {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_vsiTXUnderrun_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_vsiTXUnderrun_get(swigCPtr);
return ret;
}
}
public uint vsiIFRCRCBit {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_vsiIFRCRCBit_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_vsiIFRCRCBit_get(swigCPtr);
return ret;
}
}
public uint initMessage {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_initMessage_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_initMessage_get(swigCPtr);
return ret;
}
}
public uint flexraySecondStartupFrame {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_flexraySecondStartupFrame_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_flexraySecondStartupFrame_get(swigCPtr);
return ret;
}
}
public uint extended {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_extended_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_extended_get(swigCPtr);
return ret;
}
}
public uint hasValue {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_hasValue_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_hasValue_get(swigCPtr);
return ret;
}
}
public uint valueIsBoolean {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_valueIsBoolean_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_valueIsBoolean_get(swigCPtr);
return ret;
}
}
public uint highVoltage {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_highVoltage_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_highVoltage_get(swigCPtr);
return ret;
}
}
public uint longMessage {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_longMessage_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_longMessage_get(swigCPtr);
return ret;
}
}
public uint globalChange {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_globalChange_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_globalChange_get(swigCPtr);
return ret;
}
}
public uint errorFrame {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_errorFrame_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_errorFrame_get(swigCPtr);
return ret;
}
}
public uint endOfLongMessage {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_endOfLongMessage_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_endOfLongMessage_get(swigCPtr);
return ret;
}
}
public uint linErrorRXBreakNotZero {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorRXBreakNotZero_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorRXBreakNotZero_get(swigCPtr);
return ret;
}
}
public uint linErrorRXBreakTooShort {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorRXBreakTooShort_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorRXBreakTooShort_get(swigCPtr);
return ret;
}
}
public uint linErrorRXSyncNot55 {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorRXSyncNot55_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorRXSyncNot55_get(swigCPtr);
return ret;
}
}
public uint linErrorRXDataGreaterEight {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorRXDataGreaterEight_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorRXDataGreaterEight_get(swigCPtr);
return ret;
}
}
public uint linErrorTXRXMismatch {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorTXRXMismatch_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorTXRXMismatch_get(swigCPtr);
return ret;
}
}
public uint linErrorMessageIDParity {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorMessageIDParity_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_linErrorMessageIDParity_get(swigCPtr);
return ret;
}
}
public uint linSyncFrameError {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_linSyncFrameError_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_linSyncFrameError_get(swigCPtr);
return ret;
}
}
public uint linIDFrameError {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_linIDFrameError_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_linIDFrameError_get(swigCPtr);
return ret;
}
}
public uint linSlaveByteError {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_linSlaveByteError_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_linSlaveByteError_get(swigCPtr);
return ret;
}
}
public uint rxTimeoutError {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_rxTimeoutError_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_rxTimeoutError_get(swigCPtr);
return ret;
}
}
public uint linNoSlaveData {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_linNoSlaveData_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_linNoSlaveData_get(swigCPtr);
return ret;
}
}
public uint canfdESI {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_canfdESI_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_canfdESI_get(swigCPtr);
return ret;
}
}
public uint canfdIDE {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_canfdIDE_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_canfdIDE_get(swigCPtr);
return ret;
}
}
public uint canfdRTR {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_canfdRTR_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_canfdRTR_get(swigCPtr);
return ret;
}
}
public uint canfdFDF {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_canfdFDF_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_canfdFDF_get(swigCPtr);
return ret;
}
}
public uint canfdBRS {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_canfdBRS_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_statusbitfield_t_canfdBRS_get(swigCPtr);
return ret;
}
}
public SWIGTYPE_p_unsigned_int statusBitfield {
set {
icsneocsharpPINVOKE.neomessage_statusbitfield_t_statusBitfield_set(swigCPtr, SWIGTYPE_p_unsigned_int.getCPtr(value));
}
get {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neomessage_statusbitfield_t_statusBitfield_get(swigCPtr);
SWIGTYPE_p_unsigned_int ret = (cPtr == global::System.IntPtr.Zero) ? null : new SWIGTYPE_p_unsigned_int(cPtr, false);
return ret;
}
}
public neomessage_statusbitfield_t() : this(icsneocsharpPINVOKE.new_neomessage_statusbitfield_t(), true) {
}
}
-146
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@@ -1,146 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class neomessage_t : global::System.IDisposable {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
protected bool swigCMemOwn;
internal neomessage_t(global::System.IntPtr cPtr, bool cMemoryOwn) {
swigCMemOwn = cMemoryOwn;
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(neomessage_t obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
~neomessage_t() {
Dispose(false);
}
public void Dispose() {
Dispose(true);
global::System.GC.SuppressFinalize(this);
}
protected virtual void Dispose(bool disposing) {
lock(this) {
if (swigCPtr.Handle != global::System.IntPtr.Zero) {
if (swigCMemOwn) {
swigCMemOwn = false;
icsneocsharpPINVOKE.delete_neomessage_t(swigCPtr);
}
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
}
}
public neomessage_statusbitfield_t status {
set {
icsneocsharpPINVOKE.neomessage_t_status_set(swigCPtr, neomessage_statusbitfield_t.getCPtr(value));
}
get {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neomessage_t_status_get(swigCPtr);
neomessage_statusbitfield_t ret = (cPtr == global::System.IntPtr.Zero) ? null : new neomessage_statusbitfield_t(cPtr, false);
return ret;
}
}
public ulong timestamp {
set {
icsneocsharpPINVOKE.neomessage_t_timestamp_set(swigCPtr, value);
}
get {
ulong ret = icsneocsharpPINVOKE.neomessage_t_timestamp_get(swigCPtr);
return ret;
}
}
public ulong timestampReserved {
set {
icsneocsharpPINVOKE.neomessage_t_timestampReserved_set(swigCPtr, value);
}
get {
ulong ret = icsneocsharpPINVOKE.neomessage_t_timestampReserved_get(swigCPtr);
return ret;
}
}
public byte[] data {
set {
icsneocsharpPINVOKE.neomessage_t_data_set(swigCPtr, value);
}
get {
byte[] ret = new byte[this.length];
System.IntPtr data = icsneocsharpPINVOKE.neomessage_t_data_get(swigCPtr);
System.Runtime.InteropServices.Marshal.Copy(data, ret, 0, (int)this.length);
return ret;
}
}
public uint length {
set {
icsneocsharpPINVOKE.neomessage_t_length_set(swigCPtr, value);
}
get {
uint ret = icsneocsharpPINVOKE.neomessage_t_length_get(swigCPtr);
return ret;
}
}
public SWIGTYPE_p_unsigned_char header {
set {
icsneocsharpPINVOKE.neomessage_t_header_set(swigCPtr, SWIGTYPE_p_unsigned_char.getCPtr(value));
}
get {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neomessage_t_header_get(swigCPtr);
SWIGTYPE_p_unsigned_char ret = (cPtr == global::System.IntPtr.Zero) ? null : new SWIGTYPE_p_unsigned_char(cPtr, false);
return ret;
}
}
public ushort netid {
set {
icsneocsharpPINVOKE.neomessage_t_netid_set(swigCPtr, value);
}
get {
ushort ret = icsneocsharpPINVOKE.neomessage_t_netid_get(swigCPtr);
return ret;
}
}
public byte type {
set {
icsneocsharpPINVOKE.neomessage_t_type_set(swigCPtr, value);
}
get {
byte ret = icsneocsharpPINVOKE.neomessage_t_type_get(swigCPtr);
return ret;
}
}
public SWIGTYPE_p_unsigned_char reserved {
set {
icsneocsharpPINVOKE.neomessage_t_reserved_set(swigCPtr, SWIGTYPE_p_unsigned_char.getCPtr(value));
}
get {
global::System.IntPtr cPtr = icsneocsharpPINVOKE.neomessage_t_reserved_get(swigCPtr);
SWIGTYPE_p_unsigned_char ret = (cPtr == global::System.IntPtr.Zero) ? null : new SWIGTYPE_p_unsigned_char(cPtr, false);
return ret;
}
}
public neomessage_t() : this(icsneocsharpPINVOKE.new_neomessage_t(), true) {
}
}
-119
View File
@@ -1,119 +0,0 @@
//------------------------------------------------------------------------------
// <auto-generated />
//
// This file was automatically generated by SWIG (http://www.swig.org).
// Version 4.0.0
//
// Do not make changes to this file unless you know what you are doing--modify
// the SWIG interface file instead.
//------------------------------------------------------------------------------
public class neoversion_t : global::System.IDisposable {
private global::System.Runtime.InteropServices.HandleRef swigCPtr;
protected bool swigCMemOwn;
internal neoversion_t(global::System.IntPtr cPtr, bool cMemoryOwn) {
swigCMemOwn = cMemoryOwn;
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(this, cPtr);
}
internal static global::System.Runtime.InteropServices.HandleRef getCPtr(neoversion_t obj) {
return (obj == null) ? new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero) : obj.swigCPtr;
}
~neoversion_t() {
Dispose(false);
}
public void Dispose() {
Dispose(true);
global::System.GC.SuppressFinalize(this);
}
protected virtual void Dispose(bool disposing) {
lock(this) {
if (swigCPtr.Handle != global::System.IntPtr.Zero) {
if (swigCMemOwn) {
swigCMemOwn = false;
icsneocsharpPINVOKE.delete_neoversion_t(swigCPtr);
}
swigCPtr = new global::System.Runtime.InteropServices.HandleRef(null, global::System.IntPtr.Zero);
}
}
}
public ushort major {
set {
icsneocsharpPINVOKE.neoversion_t_major_set(swigCPtr, value);
}
get {
ushort ret = icsneocsharpPINVOKE.neoversion_t_major_get(swigCPtr);
return ret;
}
}
public ushort minor {
set {
icsneocsharpPINVOKE.neoversion_t_minor_set(swigCPtr, value);
}
get {
ushort ret = icsneocsharpPINVOKE.neoversion_t_minor_get(swigCPtr);
return ret;
}
}
public ushort patch {
set {
icsneocsharpPINVOKE.neoversion_t_patch_set(swigCPtr, value);
}
get {
ushort ret = icsneocsharpPINVOKE.neoversion_t_patch_get(swigCPtr);
return ret;
}
}
public string metadata {
set {
icsneocsharpPINVOKE.neoversion_t_metadata_set(swigCPtr, value);
}
get {
string ret = icsneocsharpPINVOKE.neoversion_t_metadata_get(swigCPtr);
return ret;
}
}
public string buildBranch {
set {
icsneocsharpPINVOKE.neoversion_t_buildBranch_set(swigCPtr, value);
}
get {
string ret = icsneocsharpPINVOKE.neoversion_t_buildBranch_get(swigCPtr);
return ret;
}
}
public string buildTag {
set {
icsneocsharpPINVOKE.neoversion_t_buildTag_set(swigCPtr, value);
}
get {
string ret = icsneocsharpPINVOKE.neoversion_t_buildTag_get(swigCPtr);
return ret;
}
}
public string reserved {
set {
icsneocsharpPINVOKE.neoversion_t_reserved_set(swigCPtr, value);
}
get {
string ret = icsneocsharpPINVOKE.neoversion_t_reserved_get(swigCPtr);
return ret;
}
}
public neoversion_t() : this(icsneocsharpPINVOKE.new_neoversion_t(), true) {
}
}
-19
View File
@@ -1,19 +0,0 @@
libicsneoc2 simple Go example
====
This is a mirror of the icsneoc2 C simple example, written in Go.
Windows
====
- Install [msys64](https://www.msys2.org/) with gcc (`pacman -S mingw-w64-ucrt-x86_64-gcc`)
- Setup environment variables:
- add `C:\msys64\ucrt64\bin` to `PATH`
- Powershell: `$env:PATH += ";C:\msys64\ucrt64\bin"`
- `gcc --version` should return a version now
- enable cgo: `CGO_ENABLED = 1`
- Powershell: `$env:CGO_ENABLED=1`
- Set compiler to gcc
- Powershell: `$env:CC="gcc"`
- `icsneoc2.dll` should be in path (or inside this directory)
- `go run simple`
-3
View File
@@ -1,3 +0,0 @@
module simple
go 1.23.4
-354
View File
@@ -1,354 +0,0 @@
package main
// #cgo CFLAGS: -I../../../include
// #cgo LDFLAGS: -L../../../build -licsneoc2
// #include "icsneo/icsneoc2.h"
// #include "stdint.h"
import "C"
import (
"fmt"
"time"
"unsafe"
)
func main() {
// Find devices connected to host.
devices := [255]*C.icsneoc2_device_t{nil}
devicesCount := 255
print("Finding devices... ")
if res := C.icsneoc2_device_find_all(&devices[0], (*C.uint)(unsafe.Pointer(&devicesCount)), nil); res != C.icsneoc2_error_success {
printError(res)
return
}
fmt.Printf("OK, %d device(s) found\n", devicesCount)
// List off the devices
for _, device := range devices[:devicesCount] {
// Get description of the device
description := make([]byte, 255)
descriptionLength := 255
if res := C.icsneoc2_device_description_get(device, (*C.char)(unsafe.Pointer(&description[0])), (*C.uint)(unsafe.Pointer(&descriptionLength))); res != C.icsneoc2_error_success {
printError(res)
continue
}
fmt.Printf("%s @ Handle %p\n", description, device)
// Get/Set open options
options := C.icsneoc2_open_options_none
if res := C.icsneoc2_device_open_options_get(device, (*C.icsneoc2_open_options_t)(unsafe.Pointer(&options))); res != C.icsneoc2_error_success {
printError(res)
continue
}
options &= ^C.icsneoc2_open_options_sync_rtc
options &= ^C.icsneoc2_open_options_go_online
fmt.Printf("\tDevice open options: 0x%X\n", options)
if res := C.icsneoc2_device_open_options_set(device, (C.icsneoc2_open_options_t)(options)); res != C.icsneoc2_error_success {
printError(res)
continue
}
// Open the device
fmt.Printf("\tOpening device: %s...\n", description)
if res := C.icsneoc2_device_open(device); res != C.icsneoc2_error_success {
printError(res)
continue
}
defer func() {
if !printDeviceEvents(device, string(description)) {
println("\tFailed to print events...")
}
fmt.Printf("\tClosing device: %s...\n", description)
if res := C.icsneoc2_device_close(device); res != C.icsneoc2_error_success {
printError(res)
return
}
}()
// Get timestamp resolution of the device
fmt.Printf("\tGetting timestamp resolution... ")
var timestampResolution C.uint = 0
if res := C.icsneoc2_device_timestamp_resolution_get(device, &timestampResolution); res != C.icsneoc2_error_success {
printError(res)
return
}
fmt.Printf("%dns\n", timestampResolution)
// Get baudrates for HSCAN
fmt.Printf("\tGetting HSCAN Baudrate... ")
var baudrate uint64 = 0
if res := C.icsneoc2_device_baudrate_get(device, (C.icsneoc2_netid_t)(C.icsneoc2_netid_hscan), (*C.uint64_t)(unsafe.Pointer(&baudrate))); res != C.icsneoc2_error_success {
printError(res)
return
}
fmt.Printf("%dmbit/s\n", baudrate)
// Get FD baudrates for HSCAN
fmt.Printf("\tGetting FD HSCAN Baudrate... ")
var fdBaudrate uint64 = 0
if res := C.icsneoc2_device_canfd_baudrate_get(device, (C.icsneoc2_netid_t)(C.icsneoc2_netid_hscan), (*C.uint64_t)(unsafe.Pointer(&fdBaudrate))); res != C.icsneoc2_error_success {
printError(res)
return
}
fmt.Printf("%dmbit/s\n", fdBaudrate)
// Set baudrates for HSCAN
// saveToDevice: If this is set to true, the baudrate will be saved on the device
// and will persist through a power cycle
var saveToDevice C.bool = false
fmt.Printf("\tSetting HSCAN Baudrate... ")
if res := C.icsneoc2_device_baudrate_set(device, (C.icsneoc2_netid_t)(C.icsneoc2_netid_hscan), (C.uint64_t)(baudrate), saveToDevice); res != C.icsneoc2_error_success {
printError(res)
return
}
fmt.Printf("OK\n")
// Set FD baudrates for HSCAN
fmt.Printf("\tSetting FD HSCAN Baudrate... ")
if res := C.icsneoc2_device_canfd_baudrate_set(device, (C.icsneoc2_netid_t)(C.icsneoc2_netid_hscan), (C.uint64_t)(fdBaudrate), saveToDevice); res != C.icsneoc2_error_success {
printError(res)
return
}
fmt.Printf("OK\n")
// Get RTC
fmt.Printf("\tGetting RTC... ")
var unix_epoch C.int64_t = 0
if res := C.icsneoc2_device_rtc_get(device, (*C.int64_t)(unsafe.Pointer(&unix_epoch))); res != C.icsneoc2_error_success {
printError(res)
return
}
currentRTC := time.Unix(int64(unix_epoch), 0)
fmt.Printf("%d %s\n", currentRTC.Unix(), currentRTC)
// Set RTC
fmt.Printf("\tSetting RTC... ")
unix_epoch = (C.int64_t)(time.Now().Unix())
if res := C.icsneoc2_device_rtc_set(device, unix_epoch); res != C.icsneoc2_error_success {
printError(res)
return
}
fmt.Printf("OK\n")
// Get RTC
fmt.Printf("\tGetting RTC... ")
if res := C.icsneoc2_device_rtc_get(device, (*C.int64_t)(unsafe.Pointer(&unix_epoch))); res != C.icsneoc2_error_success {
printError(res)
return
}
currentRTC = time.Unix(int64(unix_epoch), 0)
fmt.Printf("%d %s\n", currentRTC.Unix(), currentRTC)
// Go online, start acking traffic
fmt.Printf("\tGoing online... ")
if res := C.icsneoc2_device_go_online(device, true); res != C.icsneoc2_error_success {
printError(res)
return
}
// Redundant check to show how to check if the device is online, if the previous
// icsneoc2_device_go_online call was successful we can assume we are online already
var isOnline C.bool = false
if res := C.icsneoc2_device_is_online(device, &isOnline); res != C.icsneoc2_error_success {
printError(res)
return
}
if isOnline {
println("Online")
} else {
println("Offline")
}
// Transmit CAN messages
if !transmitCANMessages(device) {
return
}
// Wait for the bus to collect some messages, requires an active bus to get messages
println("\tWaiting 1 second for messages...")
time.Sleep(1 * time.Second)
// Get the messages
messages := [20000]*C.icsneoc2_message_t{nil}
var messagesCount C.uint32_t = 20000
if res := C.icsneoc2_device_messages_get(device, &messages[0], &messagesCount, 3000); res != C.icsneoc2_error_success {
printError(res)
return
}
// Process the messages
if !processMessages(device, messages[0:messagesCount]) {
return
}
}
}
func printError(err C.icsneoc2_error_t) C.icsneoc2_error_t {
buffer := make([]byte, 255)
bufferLength := 255
res := C.icsneoc2_error_code_get(err, (*C.char)(unsafe.Pointer(&buffer[0])), (*C.uint)(unsafe.Pointer(&bufferLength)))
if res != C.icsneoc2_error_success {
println("\ticsneoc2_get_error_code failed, original error:", err)
return res
}
println("\tError:", string(buffer[:bufferLength]))
return res
}
func printDeviceEvents(device *C.icsneoc2_device_t, deviceDescription string) bool {
// Get device events
events := [1024]*C.icsneoc2_event_t{nil}
var eventsCount C.uint32_t = 1024
if res := C.icsneoc2_device_events_get(device, &events[0], &eventsCount); res != C.icsneoc2_error_success {
printError(res)
return false
}
for i, event := range events[:eventsCount] {
eventDescription := make([]byte, 255)
var eventDescriptionLength C.uint32_t = 255
if res := C.icsneoc2_event_description_get(event, (*C.char)(unsafe.Pointer(&eventDescription[0])), &eventDescriptionLength); res != C.icsneoc2_error_success {
printError(res)
continue
}
fmt.Printf("\t%s: Event %d: %s\n", deviceDescription, i, eventDescription)
}
// Get global events
globalEvents := [1024]*C.icsneoc2_event_t{nil}
var globalEventsCount C.uint32_t = 1024
if res := C.icsneoc2_events_get(&globalEvents[0], &globalEventsCount); res != C.icsneoc2_error_success {
printError(res)
return false
}
for i, event := range globalEvents[:globalEventsCount] {
globalEventsDescription := make([]byte, 255)
var globalEventsDescriptionLength C.uint32_t = 255
if res := C.icsneoc2_event_description_get(event, (*C.char)(unsafe.Pointer(&globalEventsDescription[0])), &globalEventsDescriptionLength); res != C.icsneoc2_error_success {
printError(res)
continue
}
fmt.Printf("\t%s: Global Event %d: %s\n", deviceDescription, i, globalEventsDescription)
}
fmt.Printf("\t%s: Received %d events and %d global events\n", deviceDescription, eventsCount, globalEventsCount)
return true
}
func transmitCANMessages(device *C.icsneoc2_device_t) bool {
var counter uint32 = 0
const msgCount int = 100
fmt.Printf("\tTransmitting %d messages...\n", msgCount)
for range msgCount {
// Create the message
var message *C.icsneoc2_message_t = nil
if res := C.icsneoc2_message_can_create(device, &message, 1); res != C.icsneoc2_error_success {
printError(res)
return false
}
defer func() {
if res := C.icsneoc2_message_can_free(device, message); res != C.icsneoc2_error_success {
printError(res)
}
}()
// Set the message attributes
res := C.icsneoc2_message_netid_set(device, message, C.icsneoc2_netid_hscan)
res += C.icsneoc2_message_can_arbid_set(device, message, 0x10)
res += C.icsneoc2_message_can_canfd_set(device, message, true)
res += C.icsneoc2_message_can_extended_set(device, message, true)
res += C.icsneoc2_message_can_baudrate_switch_set(device, message, true)
// Create the payload
data := [...]C.uint8_t{
(C.uint8_t)(counter >> 56),
(C.uint8_t)(counter >> 48),
(C.uint8_t)(counter >> 40),
(C.uint8_t)(counter >> 32),
(C.uint8_t)(counter >> 24),
(C.uint8_t)(counter >> 16),
(C.uint8_t)(counter >> 8),
(C.uint8_t)(counter >> 0),
}
res += C.icsneoc2_message_data_set(device, message, &data[0], (C.uint32_t)(len(data)))
res += C.icsneoc2_message_can_dlc_set(device, message, -1)
if res != C.icsneoc2_error_success {
fmt.Printf("\tFailed to modify message: %d\n", res)
return false
}
var messageCount C.uint32_t = 1
if res := C.icsneoc2_device_messages_transmit(device, &message, &messageCount); res != C.icsneoc2_error_success {
printError(res)
return false
}
counter += 1
}
return true
}
func processMessages(device *C.icsneoc2_device_t, messages []*C.icsneoc2_message_t) bool {
txCount := 0
for i, message := range messages {
// Get the message type
var msgType C.icsneoc2_msg_type_t = 0
if res := C.icsneoc2_message_type_get(device, message, &msgType); res != C.icsneoc2_error_success {
printError(res)
return false
}
// Get the message type name
msgTypeName := make([]byte, 128)
var msgTypeNameLength C.uint32_t = 128
if res := C.icsneoc2_message_type_name_get(msgType, (*C.char)(unsafe.Pointer(&msgTypeName[0])), &msgTypeNameLength); res != C.icsneoc2_error_success {
printError(res)
return false
}
// Check if the message is a bus message, ignore otherwise
if msgType != C.icsneoc2_msg_type_bus {
fmt.Print("\tIgnoring message type: %d (%s)\n", msgType, msgTypeName)
continue
}
// Get the message bus type
var msgBusType C.icsneoc2_msg_bus_type_t = 0
if res := C.icsneoc2_message_bus_type_get(device, message, &msgBusType); res != C.icsneoc2_error_success {
printError(res)
return false
}
// Get the bus message type name
msgBusTypeName := make([]byte, 128)
var msgBusTypeNameLength C.uint32_t = 128
if res := C.icsneoc2_bus_type_name_get(msgBusType, (*C.char)(unsafe.Pointer(&msgBusTypeName[0])), &msgBusTypeNameLength); res != C.icsneoc2_error_success {
printError(res)
return false
}
// Check if the message is a transmit message
var isTransmit C.bool = false
if res := C.icsneoc2_message_is_transmit(device, message, &isTransmit); res != C.icsneoc2_error_success {
printError(res)
return false
}
if isTransmit {
txCount += 1
continue
}
fmt.Printf("\t%d) Message type: %d bus type: %s (%d)\n", i, msgType, msgBusTypeName, msgBusType)
if msgBusType == C.icsneoc2_msg_bus_type_can {
var arbid C.uint32_t = 0
var dlc C.int32_t = 0
var netid C.icsneoc2_netid_t = 0
var isRemote C.bool = false
var isCanfd C.bool = false
var isExtended C.bool = false
data := make([]byte, 64)
var dataLength C.uint32_t = 64
netidName := make([]byte, 128)
var netidNameLength C.uint32_t = 128
var res C.icsneoc2_error_t = C.icsneoc2_error_success
res = C.icsneoc2_message_netid_get(device, message, &netid)
res += C.icsneoc2_netid_name_get(netid, (*C.char)(unsafe.Pointer(&netidName)), &netidNameLength)
res += C.icsneoc2_message_can_arbid_get(device, message, &arbid)
res += C.icsneoc2_message_can_dlc_get(device, message, &dlc)
res += C.icsneoc2_message_can_is_remote(device, message, &isRemote)
res += C.icsneoc2_message_can_is_canfd(device, message, &isCanfd)
res += C.icsneoc2_message_can_is_extended(device, message, &isExtended)
res += C.icsneoc2_message_data_get(device, message, (*C.uint8_t)(unsafe.Pointer(&data[0])), &dataLength)
// We really should check the error message for all of these since we can't tell the exact error if something
// bad happens but for an example this should be okay.
if res != C.icsneoc2_error_success {
fmt.Printf("\tFailed to get CAN parameters (error: %d) for index %d\n", res, i)
continue
}
// Finally lets print the RX message
fmt.Printf("\t NetID: %s (0x%X)\tArbID: 0x%X\t DLC: %d\t Remote: %t\t CANFD: %t\t Extended: %t\t Data length: %d\n", netidName, netid, arbid, dlc, isRemote, isCanfd, isExtended, dataLength)
fmt.Printf("\t Data: [")
for _, d := range data[:dataLength] {
fmt.Printf(" 0x%X", d)
}
println(" ]")
continue
} else {
fmt.Printf("\tIgnoring bus message type: %d (%s)\n", msgBusType, msgBusTypeName)
continue
}
}
fmt.Printf("\tReceived %d messages total, %d were TX messages\n", len(messages), txCount)
return true
}
-13
View File
@@ -1,13 +0,0 @@
cmake_minimum_required(VERSION 3.2)
project(icsneojava VERSION 0.2.0)
find_package(Java REQUIRED)
find_package(JNI REQUIRED)
include(UseJava)
include_directories(${JNI_INCLUDE_DIRS})
add_subdirectory(${CMAKE_CURRENT_SOURCE_DIR}/../third-party/libicsneo ${CMAKE_CURRENT_BINARY_DIR}/third-party/libicsneo)
add_library(icsneojava SHARED ${CMAKE_CURRENT_SOURCE_DIR}/java_wrap.c)
target_link_libraries(icsneojava icsneoc)
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# libicsneo Java Example
This is an example console application which uses icsneojava to connect to an Intrepid Control Systems hardware device. It has both interactive and simple examples for sending and receiving CAN & CAN FD traffic.
## Cloning
This will create a copy of the repository on your local machine.
Run:
```shell
git clone https://github.com/intrepidcs/libicsneo-examples -b v0.2.0-dev --recursive
```
Alternatively, if you cloned without the `--recursive flag`, you must enter the `libicsneo-examples` folder and run the following:
```shell
git submodule update --recursive --init
```
If you haven't done this, `third-party/libicsneo` will be empty and you won't be able to build!
## Windows
### Building the DLL's
#### icsneoc
First, we are going to build the icsneoc library into a .dll file that is used by the Java wrapper to access the library functions.
1. Change directories to the `libicsneo-examples/third-party/libicsneo` folder.
2. Create a build directory by running `mkdir -p build`
3. Enter the build directory with `cd build`
4. Run `cmake ..` to generate your Makefile.
* Hint! Running `cmake -DCMAKE_BUILD_TYPE=Debug ..` will generate the proper scripts to build debug, and `cmake -DCMAKE_BUILD_TYPE=Release ..` will generate the proper scripts to build with all optimizations on.
5. Run `cmake --build .` to build the library.
* Hint! Speed up your build by using multiple processors! Use `make -j#` where `#` is the number of cores/threads your system has plus one. For instance, on a standard 8 thread Intel i7, you might use `-j9` for an ~8x speedup.
6. The `icsneoc.dll` file will be generated in `libicsneo-examples/third-party/libicsneo/build/Debug`. Move this file to the `/C/Windows/System32` folder.
#### icsneojava
Next, we are going to build the wrapper functions into a .dll file that is used to access the library functions in Java.
1. Change directories to the `libicsneo-examples/libicsneojava-example` folder.
2. Create a build directory by running `mkdir -p build`
3. Enter the build directory with `cd build`
4. Run `cmake ..` to generate your Makefile.
* Hint! Running `cmake -DCMAKE_BUILD_TYPE=Debug ..` will generate the proper scripts to build debug, and `cmake -DCMAKE_BUILD_TYPE=Release ..` will generate the proper scripts to build with all optimizations on.
5. Run `cmake --build .` to build the library.
* Hint! Speed up your build by using multiple processors! Use `make -j#` where `#` is the number of cores/threads your system has plus one. For instance, on a standard 8 thread Intel i7, you might use `-j9` for an ~8x speedup.
6. The `icsneojava.dll` file will be generated in `libicsneo-examples/libicsneojava-example/build/Debug`. Move this file to the `/C/Windows/System32` folder.
### Building and running the example program
1. Change directories to the `libicsneo-examples/libicsneojava-example/src` folder.
2. Run `javac Run.java`
3. Run `java Run`
## Ubuntu 18.04 LTS
### Building the .so's
#### icsneoc
1. Install dependencies with `sudo apt update` then `sudo apt install build-essential cmake libusb-1.0-0-dev libpcap0.8-dev`
2. Change directories to `libicsneo-examples/third-party/libicsneo` and create a build directory by running `mkdir -p build`
3. Enter the build directory with `cd build`
4. Run `cmake ..` to generate your Makefile.
* Hint! Running `cmake -DCMAKE_BUILD_TYPE=Debug ..` will generate the proper scripts to build debug, and `cmake -DCMAKE_BUILD_TYPE=Release ..` will generate the proper scripts to build with all optimizations on.
5. Run `make` to build the library.
* Hint! Speed up your build by using multiple processors! Use `make -j#` where `#` is the number of cores/threads your system has plus one. For instance, on a standard 8 thread Intel i7, you might use `-j9` for an ~8x speedup.
6. Run `sudo cp libicsneoc.so /usr/lib` so that it can be found via the default ubuntu .so search path. For more information, see the [ld.so.8 man page](http://man7.org/linux/man-pages/man8/ld.so.8.html).
#### icsneojava
Next, we are going to build the wrapper functions into a .so file that is used to access the library functions in Java.
1. Change directories to the `libicsneo-examples/libicsneojava-example` folder.
2. Create a build directory by running `mkdir -p build`
3. Enter the build directory with `cd build`
4. Run `cmake ..` to generate your Makefile.
* Hint! Running `cmake -DCMAKE_BUILD_TYPE=Debug ..` will generate the proper scripts to build debug, and `cmake -DCMAKE_BUILD_TYPE=Release ..` will generate the proper scripts to build with all optimizations on.
5. Run `cmake --build .` to build the library.
* Hint! Speed up your build by using multiple processors! Use `make -j#` where `#` is the number of cores/threads your system has plus one. For instance, on a standard 8 thread Intel i7, you might use `-j9` for an ~8x speedup.
6. The `icsneojava.so` file will be generated in `libicsneo-examples/libicsneojava-example/build/Debug`. Run `sudo cp libicsneojava.so /usr/lib` so that it can be found via the default ubuntu .so search path. For more information, see the [ld.so.8 man page](http://man7.org/linux/man-pages/man8/ld.so.8.html).
### Building and running the example program
1. Change directories to the `libicsneo-examples/libicsneojava-example/src` folder.
2. Run `javac Run.java`
3. Run `java Run`

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