# Parameters:
# instance.parameter=value #(type, mode) default = 'def value' : description : [min..max]
#----------------------------------------------------------------------------------------------
cpu0.FPU=0 # (bool , init-time) default = '1' : Set whether the model has VFP support
cpu0.DSP=0 # (bool , init-time) default = '1' : Set whether the model has the DSP extension
cpu0.semihosting-enable=0 # (bool , init-time) default = '1' : Enable semihosting SVC traps. Applications that do not use semihosting must set this parameter to false.
cpu0.MPU_S=0x8 # (int , init-time) default = '0x8' : Number of regions in the Secure MPU. If Security Extentions are absent, this is ignored : [0x0..0x10]
cpu0.MPU_NS=0x8 # (int , init-time) default = '0x8' : Number of regions in the Non-Secure MPU. If Security Extentions are absent, this is the total number of MPU regions : [0x0..0x10]
cpu0.ITM=0 # (bool , init-time) default = '1' : Level of instrumentation trace supported. false : No ITM trace included, true: ITM trace included
cpu0.IRQLVL=0x3 # (int , init-time) default = '0x3' : Number of bits of interrupt priority : [0x3..0x8]
cpu0.BIGENDINIT=0 # (bool , init-time) default = '0' : Initialize processor to big endian mode
cpu0.INITSVTOR=0x00000000 # (int , init-time) default = '0x10000000' : Secure vector-table offset at reset : [0x0..0xFFFFFF80]
cpu0.INITNSVTOR=0x0 # (int , init-time) default = '0x0' : Non-Secure vector-table offset at reset : [0x0..0xFFFFFF80]
cpu0.SAU=0x0 # (int , init-time) default = '0x4' : Number of SAU regions (0 => no SAU) : [0x0..0x8]
cpu0.SAU_CTRL.ENABLE=0 # (bool , init-time) default = '0' : Enable SAU at reset
cpu0.SAU_CTRL.ALLNS=0 # (bool , init-time) default = '0' : At reset, the SAU treats entire memory space as NS when the SAU is disabled if this is set
cpu0.NUM_IDAU_REGION=0x0 # (int , init-time) default = '0xA' :
cpu0.LOCK_SAU=0 # (bool , init-time) default = '0' : Lock down of SAU registers write
cpu0.LOCK_S_MPU=0 # (bool , init-time) default = '0' : Lock down of Secure MPU registers write
cpu0.LOCK_NS_MPU=0 # (bool , init-time) default = '0' : Lock down of Non-Secure MPU registers write
cpu0.CPIF=1 # (bool , init-time) default = '1' : Specifies whether the external coprocessor interface is included
cpu0.SECEXT=0 # (bool , init-time) default = '1' : Whether the ARMv8-M Security Extensions are included
fvp_mps2.DISABLE_GATING=1 # (bool , init-time) default = '0' : Disable Memory gating logic
fvp_mps2.NUM_IDAU_REGION=0x0 # (int , init-time) default = '0xA' :
fvp_mps2.SCC_ID.Variant=0x0 # (int , init-time) default = '0x0' : SCC_ID[23:20], X in the FGPA version 'rXpY' : [0x0..0xF]
fvp_mps2.SCC_ID.Revision=0x1 # (int , init-time) default = '0x1' : SCC_ID[3:0], Y in the FGPA version 'rXpY' : [0x0..0xF]
fvp_mps2.platform_type=0x0 # (int , init-time) default = '0x0' : 0:MPS2 ; 1:IoT Kit ; 2:Castor : [0x0..0x2]
fvp_mps2.extra_psram=0 # (bool , init-time) default = '0' : Increases PSRAM to 32Mb
fvp_mps2.UART2.out_file="" # (string, init-time) default = '' : Output file to hold data written by the UART (use '-' to send all output to stdout)
fvp_mps2.UART2.in_file="" # (string, init-time) default = '' : Input file for data to be read by the UART
fvp_mps2.UART2.unbuffered_output=0 # (bool , init-time) default = '0' : Unbuffered output
fvp_mps2.UART2.in_file_escape_sequence="##" # (string, init-time) default = '##' : Input file escape sequence
fvp_mps2.UART2.shutdown_on_eot=0 # (bool , init-time) default = '0' : Shutdown simulation when a EOT (ASCII 4) char is transmitted (useful for regression tests when semihosting is not available)
fvp_mps2.UART2.shutdown_tag="" # (string, run-time ) default = '' : Shutdown simulation when a string is transmitted
fvp_mps2.UART1.out_file="" # (string, init-time) default = '' : Output file to hold data written by the UART (use '-' to send all output to stdout)
fvp_mps2.UART1.in_file="" # (string, init-time) default = '' : Input file for data to be read by the UART
fvp_mps2.UART1.unbuffered_output=0 # (bool , init-time) default = '0' : Unbuffered output
fvp_mps2.UART1.in_file_escape_sequence="##" # (string, init-time) default = '##' : Input file escape sequence
fvp_mps2.UART1.shutdown_on_eot=0 # (bool , init-time) default = '0' : Shutdown simulation when a EOT (ASCII 4) char is transmitted (useful for regression tests when semihosting is not available)
fvp_mps2.UART1.shutdown_tag="" # (string, run-time ) default = '' : Shutdown simulation when a string is transmitted
fvp_mps2.mps2_visualisation.rate_limit-enable=1 # (bool , init-time) default = '1' : Rate limit simulation.
fvp_mps2.mps2_visualisation.disable-visualisation=0 # (bool , init-time) default = '0' : Enable/disable visualisation
fvp_mps2.mps2_visualisation.window_title="CLCD %cpu%" # (string, init-time) default = 'CLCD %cpu%' : Window title (%cpu% is replaced by cpu_name)
fvp_mps2.mps2_visualisation.idler.delay_ms=0x32 # (int , init-time) default = '0x32' : Determines the period, in milliseconds of real time, between gui_callback() calls.
fvp_mps2.telnetterminal0.mode="telnet" # (string, init-time) default = 'telnet' : Terminal initialisation mode
fvp_mps2.telnetterminal0.start_telnet=1 # (bool , init-time) default = '1' : Start telnet if nothing connected
fvp_mps2.telnetterminal0.start_port=0x1388 # (int , init-time) default = '0x1388' : Telnet TCP Port Number : [0x0..0xFFFFFFFF]
fvp_mps2.telnetterminal0.quiet=0 # (bool , init-time) default = '0' : Avoid output on stdout/stderr
fvp_mps2.telnetterminal0.terminal_command="" # (string, init-time) default = '' : Commandline to launch a terminal application and connect to the opened TCP port. Keywords %port and %title will be replaced with the opened port number and component name respectively. An empty string (default behaviour) will launch xterm (Linux) or telnet.exe (Windows)
fvp_mps2.telnetterminal1.mode="telnet" # (string, init-time) default = 'telnet' : Terminal initialisation mode
fvp_mps2.telnetterminal1.start_telnet=1 # (bool , init-time) default = '1' : Start telnet if nothing connected
fvp_mps2.telnetterminal1.start_port=0x1388 # (int , init-time) default = '0x1388' : Telnet TCP Port Number : [0x0..0xFFFFFFFF]
fvp_mps2.telnetterminal1.quiet=0 # (bool , init-time) default = '0' : Avoid output on stdout/stderr
fvp_mps2.telnetterminal1.terminal_command="" # (string, init-time) default = '' : Commandline to launch a terminal application
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应用STM32F091CCT6单片机加TJA1051CAN收发器芯片,进行多节点通讯的代码。 IAR开发,VSCODE编辑。 这个代码资源基于STM32F091CCT6单片机和TJA1051CAN收发器芯片,可用于多节点通讯的应用场景。无论是工业自动化、汽车电子还是智能家居,这个代码资源都能够为你提供可靠的解决方案。 在代码资源中,你可以找到一系列的函数和示例代码,包括CAN总线的初始化、数据收发、错误处理等。这些函数和示例代码经过了充分的测试和验证,确保了其稳定性和可靠性。 此外,这个代码资源还提供了详细的注释和文档,帮助你更好地理解和使用其中的函数和示例代码。无论是初学者还是有经验的开发人员,你都能够从中获得有价值的信息和灵感。 如果你正在寻找一个高效、可靠、易用的多节点通讯代码资源,那么这个基于STM32F091CCT6单片机和TJA1051CAN收发器芯片的代码资源一定不会让你失望。快来下载并使用它,让你的项目更加出色吧!
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STM32CAN通讯程序 (1156个子文件)
0bbc15686b08cddf2adef884c4930f7d9615cd 23KB
0cabf9da25e25ac1b42987db86dc279ab16d81 2KB
0d0d00960e9ac8d20e8647f9ce45d01b2c2a6f 2KB
0e30074488e413aeefab4675fcb3eb5453bcf8 894B
0e508b68e5aa91201a74136c27ceabdf64f279 310B
1188525e35efbd747f2b4ee320f64ef071b5f1 334B
1539781534a500e7e64ad518ae9372ce2b3fff 11KB
20c329ff278ff8ecf4cfe25cb5a151062543c2 7KB
2a2cf2339ff77d0b22e06e1e4f84d74699f56a 42KB
2a82634ef06d0e013ee8757feea874f63bfe33 390B
2dd6ca7ee04ef20a99f405f0dd86a6df843110 112B
30325e3c5e7ab169cc46de4783d0e022c77aa9 303B
3c1136cf2bc46af05f17ae69c6f55b76fb17e1 311B
3d8fcc5d959fc7139c731a9b2d59b3a23e094c 264B
4568c40798efa34e9219d615ef3a59d5edad7f 645B
4e35792824da937736e9302b28520683e3fa0c 731B
59ba5a7ff5000851f7e657182be27579d36371 9KB
61df4cfc92f4c617c5350f3593092abf83e77d 738B
688c88b2148842995a60b2eb4b3a2402e3eb14 283B
68ef7a5f3432eff306fdd52123f29e5b4103fc 341B
6cb93185dbdd5f4b74d80e484e8b609e3bd8f4 742B
6fab6d46ce016f163c7994242f053b426540f9 752B
825dc642cb6eb9a060e54bf8d69288fbee4904 15B
82a3368a797fbe1acbc0597df5fa78ae3676ba 341B
837e2923afc2ca64f04448180c2e471911e718 335B
83d417a8a23e569f2146ecc0f1d5f30c443a82 2KB
83fa6e4f13851f93a36a77ec5f04168a07ade7 1KB
888321a4e91c5d9d9fb030837b193b549b652a 23KB
892b1b4786f403a31807ace2d75d39e81f8ce1 232B
9485553114a86afa17fdafafee225b58a6e163 901B
98fbcf979f456be77f13f40a0b5f46e92cc1cf 11KB
9e363839038d875275e01dcfc9b5a348406f95 57B
iar_cortexM0b_math.a 2.8MB
iar_cortexM0l_math.a 2.8MB
libarm_cortexM0l_math.a 2.61MB
author-script 124B
AUTO_MERGE 41B
b65850abe680a29cae41d4153a51bcfa8fecfc 7KB
git-rebase-todo.backup 2KB
H2_DATAB.H2_DATAB.cspy.bat 2KB
H2_DATAB.pbd.browse 2.83MB
arm_linear_interp_data.c 4.12MB
arm_common_tables.c 987KB
arm_dct4_init_f32.c 809KB
arm_dct4_init_q31.c 637KB
arm_dct4_init_q15.c 494KB
arm_rfft_init_f32.c 341KB
arm_rfft_init_q31.c 326KB
transform_tests_common_data.c 273KB
arm_rfft_init_q15.c 252KB
stm32f0xx_hal_tim.c 246KB
stm32f0xx_hal_i2c.c 239KB
stm32f0xx_hal_uart.c 143KB
stm32f0xx_hal_spi.c 142KB
stm32f0xx_hal_usart.c 113KB
stm32f0xx_hal_smartcard.c 113KB
stm32f0xx_hal_irda.c 109KB
stm32f0xx_hal_smbus.c 98KB
stm32f0xx_hal_adc.c 95KB
stm32f0xx_hal_tim_ex.c 81KB
stm32f0xx_hal_can.c 80KB
SEGGER_RTT.c 75KB
filtering_test_common_data.c 64KB
stm32f0xx_hal_rtc.c 63KB
stm32f0xx_hal_i2s.c 62KB
stm32f0xx_hal_pcd.c 58KB
stm32f0xx_hal_rtc_ex.c 56KB
arm_cfft_radix4_q15.c 55KB
stm32f0xx_hal_rcc.c 50KB
stm32f0xx_ll_tim.c 44KB
arm_fft_bin_data.c 43KB
arm_conv_partial_fast_q15.c 43KB
stm32f0xx_hal_dac.c 39KB
arm_cfft_radix4_q31.c 39KB
arm_conv_fast_q15.c 38KB
stm32f0xx_hal_dac_ex.c 38KB
arm_correlate_fast_q15.c 36KB
stm32f0xx_hal_rcc_ex.c 35KB
arm_cfft_radix4_f32.c 34KB
stm32f0xx_hal_tsc.c 33KB
controller_test_common_data.c 33KB
stm32f0xx_hal_cec.c 32KB
stm32f0xx_hal_uart_ex.c 32KB
stm32f0xx_hal_flash_ex.c 31KB
stm32f0xx_hal_comp.c 31KB
arm_fir_f32.c 28KB
stm32f0xx_hal_dma.c 27KB
fir_tests.c 26KB
fast_math_tests_common_data.c 26KB
conv_tests.c 25KB
UpComProtocol.c 25KB
arm_conv_partial_q15.c 25KB
stm32f0xx_ll_rtc.c 24KB
stm32f0xx_ll_usb.c 24KB
arm_correlate_q7.c 24KB
arm_conv_partial_q7.c 24KB
stm32f0xx_ll_adc.c 23KB
stm32f0xx_ll_utils.c 23KB
arm_graphic_equalizer_example_q31.c 23KB
biquad.c 23KB
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