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Datei
test.lst
07F2 __initialization: 61 62 ; Clear objects allocated to COMMON 63 07F2 01F0 clrf __pbssCOMMON& (0+127) 64 07F3 01F1 clrf (__pbssCOMMON+1)& (0+127) 65 07F4 01F2 clrf (__pbssCOMMON+2)& (0+127) 66 07F5 01F3 clrf (__pbssCOMMON+3)& (0+127) 67 07F6 01F4 clrf (__pbssCOMMON+4)& (0+127) 68 07F7 01F5 clrf (__pbssCOMMON+5)& (0+127) 69 07F8 01F6 clrf (__pbssCOMMON+6)& (0+127) 70 07F9 01F7 clrf (__pbssCOMMON+7)& (0+127) 71 07FA 01F8 clrf (__pbssCOMMON+8)& (0+127) 72 07FB 01F9 clrf (__pbssCOMMON+9)& (0+127) 73 07FC end_of_initialization
in „[C] XC8 verschwendet Speicher“ · Mikrocontroller und Digitale Elektronik ·
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Datei
analyse.txt
size dataporta, 8 dataporta: .byte -2 .byte -3 .byte -5 .byte -9 .byte -17 .byte -33 .byte -65 .byte 127 .global dataportb .type dataportb, @object .size dataportb, 6 dataportb: .byte -5 .byte -9 .byte -17 .byte -33 .byte -65 .byte 127 .global dataportd .type dataportd, @object .size dataportd, 4 dataportd
in „Inline-Assembler: Label-Sprungadresse in Z-Register laden - wie?“ · Compiler & IDEs ·
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Datei
sect100.inc
-----------------------------------; .section data_SB8, data .org 00000400H data_SB8_top: .section bss_SB8, data, align bss_SB8_top: .section data_NEAR, data, align data_NEAR_top: .section bss_NEAR, data, align bss_NEAR_top: .section data_MON1, data, align data_MON1_top: .section bss_MON1, data, align bss_MON1_top: .section data_MON2, data, align data_MON2_top: .section bss_MON2, data, align bss_MON2_top: .section data_MON3, data, align data_MON3_top: .section bss_MON3, data, align bss_MON3_top: .section
in „R32C/111 Carrierboard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sect30.inc
------------------------------ ; SBDATA area .section data_SE,DATA .org 400H data_SE_top: .section bss_SE,DATA,ALIGN bss_SE_top: .section data_SO,DATA data_SO_top: .section bss_SO,DATA bss_SO_top: ; near RAM area .section data_NE,DATA,ALIGN data_NE_top: .section bss_NE,DATA,ALIGN bss_NE_top: .section
in „Program ROM R8C25“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slaa049.pdf
multiplier for 3,144MHz UARTCLK .equ FLLMPY*32768 ; MCLK is used for UARTCLK ; .even ; Word boundary .bss TXPOI,2 ; Pointer to transmit buffer .bss RCPOI,2 ; Pointer to receive buffer .bss TXCNT,1 ; Counter/status for transmit .bss RCCNT,1 ; Counter/status for receive ; ; The content for the UMCTL and UBR
in „[msp430] 9600 Baud mit 32kHz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
take4.lst
;32767;",128,0,1,0 16 .stabs "char:t(0,2)=r(0,2);0;127;",128,0,1,0 17 .stabs "long int:t(0,3)=@s32;r(0,3);020000000000;017777777777;",128,0,1,0 18 .stabs "unsigned int:t(0,4)=r(0,4);0;0177777;",128,0,1,0 19 .stabs "long unsigned int:t(0,5)=@s32;r(0,5);0
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Datei
main.asm
BOOTLOADERENTRY_FROMSOFTWARE__bootup_MCUCSR 00800062 l O .data 00000004 signatureBytes 00800066 l O .bss 00000001 stayinloader 00800067 l O .bss 00000001 timeout_remaining 00800068 l O .bss 00000001 usbMsgFlags 00800069 l O .bss 00000004 replyBuffer.2025 0080006d l O .bss 00000002 currentAddress 0080006f l O .bss 00000001 bytesRemaining 00800070 l O .bss 00000001 isLastPage 00800071 l O .bss 00000001 currentRequest 00800061 l O .data 00000001 usbMsgLen 00800072 l O .bss 00000002 nullVector 00000000 l df *ABS
in „ATMEGA32 Minimum System Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bm00.asm
out 0x3d, r28 ; 61 84: df e3 ldi r29, 0x3F ; 63 86: de bf out 0x3e, r29 ; 62 00000088 <__do_clear_bss>: 88: 28 e3 ldi r18, 0x38 ; 56 8a: a0 e0 ldi r26, 0x00 ; 0 8c: b8 e3 ldi r27, 0x38 ; 56 8e: 01 c0 rjmp .+2 ; 0x92 <.do_clear_bss_start> 00000090 <.do_clear_bss_loop>: 90: 1d 92 st X+, r1 00000092 <.do_clear_bss_start>: 92: a4 30 cpi r26, 0x04 ; 4 94: b2 07 cpc r27, r18 96: e1 f7 brne .-8 ; 0x90 <.do_clear_bss_loop> 98: 0e 94 52 00 call 0xa4 ; 0xa4 <main> 9c: 0c 94 a3 00 jmp 0x146 ; 0x146 <_exit> 000000a0 <
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Datei
test.lst
off Algn 0 .text 000002b0 00000000 00000000 00000074 2**1 CONTENTS, ALLOC, LOAD, READONLY, CODE 1 .bss 00000002 00800100 00800100 00000324 2**0 ALLOC 2 .debug_aranges 00000020 00000000 00000000 00000324 2**0 CONTENTS, READONLY, DEBUGGING 3 .debug_pubnames 00000036 00000000 00000000 00000344 2**0 CONTENTS
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Datei
DG14032_PCF8574_lesen_1.c
) Data: 1 bytes (0.2% Full) (.data + .bss + .noinit) Build succeeded with 0 Warnings... ___________________________________________ AVR Memory Usage ---------------- Device: atmega48 Program: 2008 bytes (49.0% Full) (.text + .data + .bootloader) Data: 1 bytes (0.2% Full) (.data + .bss + .noinit) Die Verwendung von ltoa anstatt itoa benötiogt 74 Bytes code mehr.# ltoa: Convert a long integer to a string. ___________________________________________ Version7: Es sollen einzelne Befehle
in „(AVR-gcc) Lesen vom PCF8574 I2C-Port-Expander gelingt nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
take1.lst
;32767;",128,0,1,0 16 .stabs "char:t(0,2)=r(0,2);0;127;",128,0,1,0 17 .stabs "long int:t(0,3)=@s32;r(0,3);020000000000;017777777777;",128,0,1,0 18 .stabs "unsigned int:t(0,4)=r(0,4);0;0177777;",128,0,1,0 19 .stabs "long unsigned int:t(0,5)=@s32;r(0,5);0
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Datei
uart.s
= 0x3e __SP_L__ = 0x3d __tmp_reg__ = 0 __zero_reg__ = 1 .global __do_copy_data .global __do_clear_bss .stabs "/home/ludwig/uni/HS/studarb/bok/pre/Atmel/",100,0,2,.Ltext0 .stabs "uart.c",100,0,2,.Ltext0 .text .Ltext0: .stabs "gcc2_compiled.",60,0,0,0 .stabs "int:t(0,1)=r(0,1);-32768;32767;",128,0,0,0 .stabs "char:t(0,2)=r(0,2);0;127;",128,0,0,0 .stabs "long int:t(0,3)=@s32;r(0,3);020000000000;017777777777;",128,0,0,0 .stabs "unsigned int:t(0,4)=r(0,4);0;0177777;",128,0,0,0 .stabs "long unsigned int:t(0,5)=@s32;r(0,5);0;037777777777
in „GCC -> ASM“ · Compiler & IDEs ·
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PDF
WLAN_Firmware_Spec_v5_1.pdf
Number of bytes in command body SeqNum UINT16 Command sequence number Result UINT16 Not used (set to 0) BssType UINT8 BSS type: • BSS_INDEPENDENT • BSS_INFRASTRUCTURE • BSS_ANY BssId UINT8[6] MAC address Filter on BSSID. Zeros out to disable filter. SsIdParamSet MrvlIEtypes_SsIdParamSet_t SSID set parameter
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
STK500-Test_in_C_ASM-Translate.txt
0x60 ; 96 72: b1 07 cpc r27, r17 74: d9 f7 brne .-10 ; 0x6c <.do_copy_data_loop> 00000076 <__do_clear_bss>: 76: 10 e0 ldi r17, 0x00 ; 0 78: a0 e6 ldi r26, 0x60 ; 96 7a: b0 e0 ldi r27, 0x00 ; 0 7c: 01 c0 rjmp .+2 ; 0x80 <.do_clear_bss_start> 0000007e <.do_clear_bss_loop>: 7e: 1d 92 st X+, r1 00000080 <.do_clear_bss_start>: 80: a0 36 cpi r26, 0x60 ; 96 82: b1 07 cpc r27, r17 84: e1 f7 brne .-8 ; 0x7e <.do_clear_bss_loop> 86: 0e 94 49 00 call 0x92 ; 0x92 <main> 8a: 0c 94 ce 00 jmp 0x19c ; 0x19c <_exit> 0000008e <__bad_interrupt>: 8e: 0c 94 00 00 jmp 0 ; 0x0 <__vectors> 00000092 <main>: * Parameter: nichts * zurück
in „STK500 Testprog funzt in C funzt nicht?“ · Compiler & IDEs ·
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Datei
bm00.S
word gs(.L8) .text .L16: ldi r24,lo8(-1) ; tmp47, .L18: sts x,r24 ; x, tmp48 ret .L15: ldi r24,lo8(127) ; tmp48, rjmp .L18 ; .L14: ldi r24,lo8(63) ; tmp49, rjmp .L18 ; .L13: ldi r24,lo8(31) ; tmp50, rjmp .L18 ; .L12: ldi r24,lo8(15) ; tmp51, rjmp .L18 ; .L11: ldi r24,lo8(7) ; tmp52, rjmp .L18 ; .L10:
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PDF
Class-D_PWM_Amplifier_V2_0.pdf
2V 100R 3 1k 1k R123 10k 10k PMV15ENER R142 10k GND 3 R141 100R min = 7,3V 2 3 Q20 1 max = 7,65 3 BSS138 Mounted on Heatsink 1 R143 10k 1 3 Q19 1 2 Q16 2V+-0,27 1k Q17 2 GND LED BSS138 R132 1 R144 10k BC846 D30 C78 2 LED C81 BC846 þÿ10µF R125 R126 R127 R128 C79 D33 C80 2 Q21 R129 100nF R130 GND 1k 10k 10k 10k 100nF þÿ10µF BSS138 R145 10k 56k 200k LED R120 10k GND GND GND GND GND GND TH1 GND GND GND GND D29 GND GND GND GND GND GND GND GND NTCLE100E3333JB0 GND GND GND H H L. D. Sheet: / File: Class-D PWM Amplifier V2_0.kicad_sch
in „Class D Amp. Schaltplan überprüfen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schematic__1_.pdf
T1IN 11 PI_TX PI_I2C_SCL 2 3 OUT_I2C_SCL PI_I2C_SDA 2 3 OUT_I2C_SDA GND 7 10 T2OUT T2IN Q2 Q3 C22 8 9 BSS138 BSS138 100nF R2IN R2OUT ST3232C +3.3V +5V +3.3V +5V GND GND R12 R13 R14 R15 1kR 1kR 1kR 1kR 1 1 Turnstile Response 2 3 R16 2 3 R17 PI_LED_RING OUT_LED_RING PI_LED_MATRIX OUT_LED_MATRIX +3.3V 1kR 1kR B Q4 Q5 B BSS138 BSS138 R18 U6 TS_INPUT1_A 1 6 1kR 2 5 TS_INPUT1_C 3 4 BUZZER NC TS_INPUT1 4N35 BZ1 R19 U7 2 BUZZER TS_INPUT2_A 1 6 1kR 1 TS_INPUT2_C 2 5 PS1240P02BT 3 4 NC TS_INPUT2 4N35 GND Turnstile Output Relays
in „Hilfe benötigt! Pi Compute Module 4 Carrier Board ohne Funktion!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
foo.s
= 0x3e __SP_L__ = 0x3d __tmp_reg__ = 0 __zero_reg__ = 1 .global __do_copy_data .global __do_clear_bss ; GNU C version 4.2.4 (avr) ; compiled by GNU C version 4.0.2 20050901 (prerelease) (SUSE Linux). ; GGC heuristics: --param ggc-min-expand=99 --param ggc-min-heapsize=129491 ; options passed: -iprefix
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Datei
PinTemplateVirtual.ino.elf.txt
0x08 ; 8 c0: b1 07 cpc r27, r17 c2: d9 f7 brne .-10 ; 0xba <__do_copy_data+0xc> 000000c4 <__do_clear_bss>: c4: 28 e2 ldi r18, 0x28 ; 40 c6: a8 e0 ldi r26, 0x08 ; 8 c8: b8 e2 ldi r27, 0x28 ; 40 ca: 01 c0 rjmp .+2 ; 0xce <.do_clear_bss_start> 000000cc <.do_clear_bss_loop>: cc: 1d 92 st X+, r1 000000ce <.do_clear_bss_start>: ce: ae 31 cpi r26, 0x1E ; 30 d0: b2 07 cpc r27, r18 d2: e1 f7 brne .-8 ; 0xcc <.do_clear_bss_loop> 000000d4 <__do_global_ctors>: d4: 10 e0 ldi r17, 0x00 ; 0 d6: c1 e5 ldi r28, 0x51 ; 81 d8:
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Datei
libSTM32F4xx_StdPeriph_Driver.a
CodeBench Lite 2011.09-69) 4.6.1 A2 aeabi ( Cortex-M4 M " .symtab .strtab .shstrtab .rel.text .data .bss .comment .ARM.attributes 4 ä % + 0 0 1 9 p I 3 | I X ð H Ç ñÿ 6 V ? u N 4 ] œ r É z Ý ñ ³ ù Ù ò % þ A Õ - á L é k ý ! ° 5 Ç = ç I ò ] q A d [ ñ } ¶ ) Ý 9 û E % M = a U u t ¹ ¡ Á ± Ý stm32f4xx_adc.c
in „STM32F4 Discovery: USB CDC (serielle Schnittstelle) arbeitet!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Noname.map.txt
tools/bin/../lib/gcc/arm-none-eabi/7.3.1/thumb/v6-m/crtbegin.o 0x0000000020000728 . = ALIGN (0x4) .bss 0x0000000020000728 0x470 load address 0x0000000008006e50 0x0000000020000728 _sbss = . 0x0000000020000728 __bss_start__ = _sbss *(.bss) .bss 0x0000000020000728 0x1c c:/st/stm32cubeide_1.0.2/stm32cubeide
in „Problem mit STM32F103 und RAM-Größe“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.ino.asm
LOAD, DATA 1 .text 000005c2 00000000 00000000 00000094 2**1 CONTENTS, ALLOC, LOAD, READONLY, CODE 2 .bss 00000018 00800150 00800150 000006a6 2**0 ALLOC 3 .comment 00000011 00000000 00000000 000006a6 2**0 CONTENTS, READONLY 4 .note.gnu.avr.deviceinfo 00000040 00000000 00000000 000006b8 2**2 CONTENTS, READONLY
in „Atmega328 1-Wire mit Timer CTC/PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CRC.o.lst
= (Crc << 4) ^ CrcTable[Crc >> 28]; // Assumes 32-bit reg, masking index to 4-bits 126 .loc 1 62 0 127 0002 40F20003 movw r3, #:lower16:.LANCHOR1 128 0006 C0F20003 movt r3, #:upper16:.LANCHOR1 129 000a 4FEA1271 lsr r1, r2, #28 130 000e 53F82100 ldr r0, [r3, r1, lsl #2] 131 .LVL13: 132 0012 80EA0212 eor
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Datei
MAIN.S
= 0x3e __SP_L__ = 0x3d __tmp_reg__ = 0 __zero_reg__ = 1 .global __do_copy_data .global __do_clear_bss .text .global main .type main, @function main: /* prologue: frame size=0 */ push r15 push r16 push r17 /* prologue end (size=3) */ ldi r24,lo8(-1) out 59-0x20,r24 out 56-0x20,r24 ldi r24,lo8(-4) out
in „Bug in WinAVR oder wieso macht der Compiler so einen Müll ?“ · Compiler & IDEs ·
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Datei
mv_gcctest9.lst
__SP_L__ = 0x3d 6 __tmp_reg__ = 0 7 __zero_reg__ = 1 8 .global __do_copy_data 9 .global __do_clear_bss 12 .text 13 .Ltext0: 75 .section .progmem.data,"a",@progbits 78 __c.0: 79 0000 4865 6C6C .string "Hello World !" 79 6F20 576F 79 726C 6420 79 2100 82 __c.1: 83 000e 202D 3E20 .string " -> You pressed
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Datei
test.lst
__CCP__ = 0x34 6 __tmp_reg__ = 0 7 __zero_reg__ = 1 8 .global __do_copy_data 9 .global __do_clear_bss 17 .Ltext0: 18 .global USART_Transmit 20 USART_Transmit: 21 .LFB7: 22 .LM1: 23 /* prologue: function */ 24 /* frame size = 0 */ 25 .LVL0: 26 .L2: 27 .LM2: 28 0000 5D9B sbis 43-32,5 29 0002 00C0 rjmp
in „UART sendet nicht das was er soll (kein offset problem)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
380Compiler.pdf
; .BSS is zero-length ... ld hl,bc ; (hl)=Length ld bc,hl ; (bc)=length lo word swap hl ld ix,hl ; (ix)=length hi word ld.ib hl,.BSS_BASE; [hl]=.bss ld (hl),0 ld de,hl inc de ; [de]=.bss+1 decw bc ; 1st byte's taken care of ex hl,bc orw hl,hl ex hl,bc jr z,_c_bss_page; Just 1 byte on this page ... _c_bss_loop: ldir _c_bss_page: ex hl,ix orw hl,hl ex hl,ix jr z,_c_bss_done dec ix jr _c_bss_loop _c_bss_done: .endif ; .INITBSS ;------ main() ld hl,0 ; hl=NULL push
in „Z80 Mikrocomputer Bastelei“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32-P207-P407_rev_D.pdf
FET1 8 94 VSS_10 PB3/JTDO/TRACESWO/SPI3_SCK/I2S3_CK/TIM2_CH2/SPI1_134 TRST/SPI1_MISO R94 R15 R14 S D BSS138 B VSS_9 PB4/NJTRST/SPI3_MISO/TIM3_CH1/SPI1_MISO 4.7k 4.7k WF2S F 83 VSS_8 PB5/I2C1_SMBA/CAN2_RX/OTG_HS_ULPI_D7/ETH_PPS_OUT/TIM3_CH2/SPI1_MOSI/SPI3_MOSI/DCMI_D10/I2S3_SDI2S3_SD PB5 SOFT_SDA 61 VSS
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.s
= 0x3e __SP_L__ = 0x3d __tmp_reg__ = 0 __zero_reg__ = 1 .global __do_copy_data .global __do_clear_bss .stabs "main.c",100,0,0,.Ltext0 .text .Ltext0: .stabs "gcc2_compiled.",60,0,0,0 .stabs "int:t(0,1)=r(0,1);-32768;32767;",128,0,0,0 .stabs "char:t(0,2)=r(0,2);0;255;",128,0,0,0 .stabs "long int:t(0,3
in „Warum besitzt der AVR keine Division-Funktion?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSpice_LibraryguideOrCAD.pdf
BSS125 BSS125/SIE SIEMENS.OLB Infineon Power MOSFET BSS129 BSS129/SIE SIEMENS.OLB Infineon Power MOSFET BSS129 BSS129 PWRMOS.OLB Power MOSFET BSS135 BSS135/SIE SIEMENS.OLB Infineon Power MOSFET BSS138 BSS138
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
avr0311.S
r24,var_new ; _4, var_new lds r25,var_old ; _7, var_old andi r24,lo8(-128) ; tmp193, andi r25,lo8(127) ; tmp194, or r24,r25 ; _11, tmp194 sts var_old,r24 ; var_old, _11 lds r24,var_old ; _131, var_old lds r18,var_new ; _132, var_new lds r25,var_old ; _135, var_old eor r24,r18 ; tmp195, _132 andi r24
in „Frage Bitoperation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr-libc-user-manual.pdf
heap_end=0x803fff ... external RAM 0 F 0 0 F F 0 0 1 0 F F 0 on−board RAM x x x x x 0 0 0 0 0 .data .bss variables variables stack heap SP __malloc_heap_end == __heap_end RAMEND brkval __bss_end __malloc_heap_start == __heap_start __data_end == __bss_start __data_start Figure 3: Internal RAM: variables
in „C Tutorial gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootload.lst
SRAM 153 ;------------------------------------------------------------------------- 154 .section .bss 155 .global PROGBUFF,PROGBUFFEND 156 0000 0000 0000 PROGBUFF: .space 2*BufferSize 156 0000 0000 156 0000 0000 156 0000 0000 156 0000 0000 157 PROGBUFFEND: 158 ProgBuffEnd: 159 .section .text 160 ;--
in „Peter Danneggers Bootloader (fastboot) für AVR-GCC-Toolchain“ · Projekte & Code ·
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PDF
The-ESP8266-Book-August-2015.pdf
STATUS status) { struct bss_info *bssInfo; bssInfo = (struct bss_info *)arg; // skip the first in the chain … it is invalid bssInfo = STAILQ_NEXT(bssInfo, next); while(bssInfo != NULL) { os_printf("ssid: %s\n", bssInfo->ssid);
in „ESP8266 Freies eBook August 2015 'Kolban'“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootload.lst
SRAM 153 ;------------------------------------------------------------------------- 154 .section .bss 155 .global PROGBUFF,PROGBUFFEND 156 0000 0000 0000 PROGBUFF: .space 2*BufferSize 156 0000 0000 156 0000 0000 156 0000 0000 156 0000 0000 157 PROGBUFFEND: 158 ProgBuffEnd: 159 .section .text 160 ;--
in „Peter Danneggers Bootloader (fastboot) für AVR-GCC-Toolchain“ · Projekte & Code ·
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Datei
ir60.s
IR60Status,r24 lds r24,IR60Status andi r24,lo8(-65) sts IR60Status,r24 lds r24,IR60Status andi r24,lo8(127) sts IR60Status,r24 ldi r24,lo8(91) ldi r25,0 ldi r18,lo8(91) ldi r19,0 movw r30,r18 ld r18,Z ori r18,lo8(64) movw r30,r24 st Z,r18 rcall IR60INT0LowLevel /* epilogue start */ pop r29 pop r28 ret .size
in „C Programm in asm umwandeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TestArmTurtorialDeu.pdf
DataStart =.; *(.Daten); . = AUSRICHTEN (4); _DataEnd =.; }> SRAM AT> FLASH _DataLoad = LOADADDR (.data); .bss: { _BssStart =.; * (.bss); . = AUSRICHTEN (4); _BssEnd =.; }> SRAM } Beispielname: „BlinkInitRAM“ Der Stack wurde in einen eigenen Abschnitt mit dem Attribut "NOLOAD" gestellt, da er nicht initialisiert
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Datei
main.lst
__CCP__ = 0x34 6 __tmp_reg__ = 0 7 __zero_reg__ = 1 8 .global __do_copy_data 9 .global __do_clear_bss 17 .Ltext0: 18 .global xmem_init 20 xmem_init: 21 .LFB7: 22 .LM1: 23 /* prologue: function */ 24 /* frame size = 0 */ 25 .LM2: 26 0000 E4E7 ldi r30,lo8(116) 27 0002 F0E0 ldi r31,hi8(116) 28 0004 8081
in „RAM-Bankswitching - wie am geschicktesten mit GCC auf AVR?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
makefile.txt
extensions 123. CSTANDARD = -std=gnu99 124. 125. 126. # Place -D or -U options here for C sources 127. CDEFS = -DF_CPU=$(F_CPU)UL 128. 129. 130. # Place -D or -U options here for C++ sources 131. CPPDEFS = -DF_CPU=$(F_CPU)UL 132. #CPPDEFS += -D__STDC_LIMIT_MACROS 133. #CPPDEFS += -D__STDC_CONSTANT_MACROS
in „Problem mit compilen mit headerdatei usw“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTS4140N.pdf
4)= VA+ V S VLoaddump V R I2Ω, td=400ms, V =INow or high IL= 150 mA, V bb= 13,5 V 93.5 Vbb = 27 V 127 Electrostatic discharge voltage(Human Body Model) VESD kV according to ANSI EOS/ESD - S5.1 - 1993 ESD STM5.1 - 1998 Input pin ±1 all other pins ±5 1Device on 50mm*50mm*1.5mm epoxy PCB FR4 with 6 cm2
in „+12V mit +3.3V schalten P-MOSFET?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
715G7312_PSU.pdf
R9905 NC NC N D D N ! GND1 GND2 100PF 500V 8 7 6 5 1 1 2 R9907 R9908 FB9904 510K 1/4W 510K 1/4W HOT 127R ! GND GND ! 1 C9917 C9916 470pF 250V 1 GND3 GND4 1NF 250V ! ! 1 1 2 2 FB9916 FB9917 C9915 GND GND ! 470pF 250V BEAD 127R 1 1 COLD 2015-11-26 AC input 715G7312 20030_555.eps back to 2016-Jun-2div.table
in „Phillips 55PUS6561/12 keine Hintergrundbeleuchtung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Z80DOC.TXT
bss are simply chosen for identifica- tion; the linker assigns no special significance to the name of a psect. The difference between the data and bss psects may be exemplified by considering two external
in „Zeta SBC V2 Z80 mit Floppy Disk“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ArmAssemblerTutorial.pdf
DataStart = .; *(.data); . = ALIGN(4); _DataEnd = .; } >SRAM AT >FLASH _DataLoad = LOADADDR(.data); .bss : { _BssStart = .; *(.bss); . = ALIGN(4); _BssEnd = .; } >SRAM } Example name: “BlinkInitRAM” The stack got put in its own section with the “NOLOAD” attribute, since it doesn’t need initializing. The
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PDF
HardInfo__0.5.pdf
3fe8ffff System RAM 00400000-0076a12a Kernel code 0076a12b-009885a7 Kernel data 009fc000-00ac2a0f Kernel bss 3fe90000-3fe99fff ACPI Tables 3fe9a000-3fefffff ACPI Non-volatile Storage 3ff00000-3fffffff reserved b0000000-c07fffff PCI Bus 0000:02 b0000000-bfffffff nVidia Corporation G72M [Quadro NVS 110M/GeForce
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The-ESP8266-Book-September-2015.pdf
*arg, STATUS status) { struct bss_info *bssInfo; bssInfo = (struct bss_info *)arg; // skip the first in the chain … it is invalid bssInfo = STAILQ_NEXT(bssInfo, next); while(bssInfo != NULL) { os_printf("ssid: %s\n", bssInfo->ssid);
in „ESP8266 Freies eBook August 2015 'Kolban'“ · Mikrocontroller und Digitale Elektronik ·
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Datei
app_bootloader.lst
387a: b1 07 cpc r27, r17 387c: d9 f7 brne .-10 ; 0x3874 <__do_copy_data+0xc> 0000387e <__do_clear_bss>: 387e: 11 e0 ldi r17, 0x01 ; 1 3880: a2 ec ldi r26, 0xC2 ; 194 3882: b1 e0 ldi r27, 0x01 ; 1 3884: 01 c0 rjmp .+2 ; 0x3888 <.do_clear_bss_start> 00003886 <.do_clear_bss_loop>: 3886: 1d 92 st X+, r1 00003888 <.do_clear_bss_start>: 3888: a9 3f cpi r26, 0xF9 ; 249 388a: b1 07 cpc r27, r17 388c: e1 f7 brne .-8 ; 0x3886 <.do_clear_bss_loop> 388e: 0e 94 4d 1c call 0x389a ; 0x389a <main> 3892: 0c 94 59 1f jmp 0x3eb2 ; 0x3eb2
in „2 byte >> 1 word“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ee24xx.lst
__SP_L__ = 0x3d 6 __tmp_reg__ = 0 7 __zero_reg__ = 1 8 .global __do_copy_data 9 .global __do_clear_bss 11 .text 12 .Ltext0: 57 .global ee24xx_init 59 ee24xx_init: 1:ee24xx.c **** /* 2:ee24xx.c **** * ---------------------------------------------------------------------------- 3:ee24xx.c **** * "THE BEER-WARE
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PDF
4P018-00_03_G2_Aurora_Mb_COG_Driver_Interface_Timing_for_small_size_20150727.pdf
discharge when EPD power off VST 1 Q3 VGL 100K/5% 100K/5% 1 R3 R2 D1 VCOM SS2040FL R5 100K/5% 2 3 BSS84W Q4 Connect to Timing Controller GPIO BORDER_CONTROL 1 2 VCC BORDER Control: Square Pulse when power on Note : 1. V and V must be discharged promptly after power off DD CC 2. 2.7" Pin.1 location (
in „Probleme mit Breakoutboard für 2" Pervasive Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4P018-00_03_G2_Aurora_Mb_COG_Driver_Interface_Timing_for_small_size_20150727.pdf
discharge when EPD power off VST 1 Q3 VGL 100K/5% 100K/5% 1 R3 R2 D1 VCOM SS2040FL R5 100K/5% 2 3 BSS84W Q4 Connect to Timing Controller GPIO BORDER_CONTROL 1 2 VCC BORDER Control: Square Pulse when power on Note : 1. V and V must be discharged promptly after power off DD CC 2. 2.7" Pin.1 location (
in „e Papier einzelne Bildpunkte setzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4P018-00_03_G2_Aurora_Mb_COG_Driver_Interface_Timing_for_small_size_20150727.pdf
discharge when EPD power off VST 1 Q3 VGL 100K/5% 100K/5% 1 R3 R2 D1 VCOM SS2040FL R5 100K/5% 2 3 BSS84W Q4 Connect to Timing Controller GPIO BORDER_CONTROL 1 2 VCC BORDER Control: Square Pulse when power on Note : 1. V and V must be discharged promptly after power off DD CC 2. 2.7" Pin.1 location (
in „Wie muss man Pervasive Displays beschreiben?“ · Mikrocontroller und Digitale Elektronik ·