TLC2543是TI公司的12位串行模數轉換器,使用開關電容逐次逼近技術完成A/D轉換過程。由于是串行輸入結構,能夠節省51系列單片機I/O資源;且價格適中,分辨率較高,因此在儀器儀表中有較為廣泛的應用。 TLC2543的特點 (1)12位分辯率A/D轉換器; (2)在工作溫度范圍內10μs轉換時間; (3)11個模擬輸入通道; (4)3路內置自測試方式; (5)采樣率為66kbps; (6)線性誤差±1LSBmax; (7)有轉換結束輸出EOC; (8)具有單、雙極性輸出; (9)可編程的MSB或LSB前導; (10)可編程輸出數據長度。 TLC2543的引腳排列及說明 TLC2543有兩種封裝形式:DB、DW或N封裝以及FN封裝,這兩種封裝的引腳排列如圖1,引腳說明見表1 TLC2543電路圖和程序欣賞 #include<reg52.h> #include<intrins.h> #define uchar unsigned char #define uint unsigned int sbit clock=P1^0; sbit d_in=P1^1; sbit d_out=P1^2; sbit _cs=P1^3; uchar a1,b1,c1,d1; float sum,sum1; double sum_final1; double sum_final; uchar duan[]={0x3f,0x06,0x5b,0x4f,0x66,0x6d,0x7d,0x07,0x7f,0x6f}; uchar wei[]={0xf7,0xfb,0xfd,0xfe}; void delay(unsigned char b) //50us { unsigned char a; for(;b>0;b--) for(a=22;a>0;a--); } void display(uchar a,uchar b,uchar c,uchar d) { P0=duan[a]|0x80; P2=wei[0]; delay(5); P2=0xff; P0=duan[b]; P2=wei[1]; delay(5); P2=0xff; P0=duan[c]; P2=wei[2]; delay(5); P2=0xff; P0=duan[d]; P2=wei[3]; delay(5); P2=0xff; } uint read(uchar port) { uchar i,al=0,ah=0; unsigned long ad; clock=0; _cs=0; port<<=4; for(i=0;i<4;i++) { d_in=port&0x80; clock=1; clock=0; port<<=1; } d_in=0; for(i=0;i<8;i++) { clock=1; clock=0; } _cs=1; delay(5); _cs=0; for(i=0;i<4;i++) { clock=1; ah<<=1; if(d_out)ah|=0x01; clock=0; } for(i=0;i<8;i++) { clock=1; al<<=1; if(d_out) al|=0x01; clock=0; } _cs=1; ad=(uint)ah; ad<<=8; ad|=al; return(ad); } void main() { uchar j; sum=0;sum1=0; sum_final=0; sum_final1=0; while(1) { for(j=0;j<128;j++) { sum1+=read(1); display(a1,b1,c1,d1); } sum=sum1/128; sum1=0; sum_final1=(sum/4095)*5; sum_final=sum_final1*1000; a1=(int)sum_final/1000; b1=(int)sum_final%1000/100; c1=(int)sum_final%1000%100/10; d1=(int)sum_final%10; display(a1,b1,c1,d1); } }
上傳時間: 2013-11-19
上傳用戶:shen1230
EZ-USB FX系列單片機USB外圍設備設計與應用:PART 1 USB的基本概念第1章 USB的基本特性1.1 USB簡介21.2 USB的發展歷程31.2.1 USB 1.131.2.2 USB 2.041.2.3 USB與IEEE 1394的比較41.3 USB基本架構與總線架構61.4 USB的總線結構81.5 USB數據流的模式與管線的概念91.6 USB硬件規范101.6.1 USB的硬件特性111.6.2 USB接口的電氣特性121.6.3USB的電源管理141.7 USB的編碼方式141.8 結論161.9 問題與討論16第2章 USB通信協議2.1 USB通信協議172.2 USB封包中的數據域類型182.2.1 數據域位的格式182.3 封包格式192.4 USB傳輸的類型232.4.1 控制傳輸242.4.2 中斷傳輸292.4.3 批量傳輸292.4.4 等時傳輸292.5 USB數據交換格式302.6 USB描述符342.7 USB設備請求422.8 USB設備群組442.9 結論462.10 問題與討論46第3章 設備列舉3.1注冊表編輯器473.2設備列舉的步驟493.3設備列舉步驟的實現--使用CATC分析工具513.4結論613.5問題與討論61第4章 USB芯片與EZUSB4.1USB芯片的簡介624.2USB接口芯片644.2.1Philips接口芯片644.2.2National Semiconductor接口芯片664.3內含USB單元的微處理器684.3.1Motorola694.3.2Microchip694.3.3SIEMENS704.3.4Cypress714.4USB芯片總攬介紹734.5USB芯片的選擇與評估744.6問題與討論80第5章 設備與驅動程序5.1階層式的驅動程序815.2主機的驅動程序835.3驅動程序的選擇865.4結論865.5問題與討論87第6章 HID群組6.1HID簡介886.2HID群組的傳輸速率886.3HID描述符906.3.1報告描述符936.3.2主要 main 項目類型966.3.3整體 global 項目卷標976.3.4區域 local 項目卷標986.3.5簡易的報告描述符996.3.6Descriptor Tool 描述符工具 1006.3.7兼容測試程序1016.4HID設備的基本請求1026.5Windows通信程序1036.6問題與討論106PART 2 硬件技術篇第7章 EZUSB FX簡介7.1簡介1097.2EZUSB FX硬件框圖1097.3封包與PID碼1117.4主機是個主控者1137.4.1從主機接收數據1137.4.2傳送數據至主機1137.5USB方向1137.6幀1147.7EZUSB FX傳輸類型1147.7.1批量傳輸1147.7.2中斷傳輸1147.7.3等時傳輸1157.7.4控制傳輸1157.8設備列舉1167.9USB核心1167.10EZUSB FX單片機1177.11重新設備列舉1177.12EZUSB FX端點1187.12.1EZUSB FX批量端點1187.12.2EZUSB FX控制端點01187.12.3EZUSB FX中斷端點1197.12.4EZUSB FX等時端點1197.13快速傳送模式1197.14中斷1207.15重置與電源管理1207.16EZUSB 2100系列1207.17FX系列--從FIFO1227.18FX系列--GPIF 通用型可程序化的接口 1227.19AN2122/26各種特性的摘要1227.20修訂ID1237.21引腳描述123第8章 EZUSB FX CPU8.1簡介1308.28051增強模式1308.3EZUSB FX所增強的部分1318.4EZUSB FX寄存器接口1318.5EZUSB FX內部RAM1318.6I/O端口1328.7中斷1328.8電源控制1338.9特殊功能寄存器 SFR 1348.10內部總線1358.11重置136第9章 EZUSB FX內存9.1簡介1379.28051內存1389.3擴充的EZUSB FX內存1399.4CS#與OE#信號1409.5EZUSB FX ROM版本141第10章 EZUSB FX輸入/輸出端口10.1簡介14310.2I/O端口14310.3EZUSB輸入/輸出端口寄存器14610.3.1端口配置寄存器14710.3.2I/O端口寄存器14710.4EZUSB FX輸入/輸出端口寄存器14910.5EZUSB FX端口配置表15110.6I2C控制器15610.78051 I2C控制器15610.8控制位15810.8.1START位15810.8.2STOP位15810.8.3LASTRD位15810.9狀態位15910.9.1DONE位15910.9.2ACK位15910.9.3BERR位15910.9.4ID1, ID015910.10送出 WRITE I2C數據16010.11接收 READ I2C數據16010.12I2C激活加載器16010.13SFR尋址 FX 16210.14端口A~E的SFR控制165第11章 EZUSB FX設備列舉與重新設備列舉11.1簡介16711.2預設的USB設備16911.3USB核心對于EP0設備請求的響應17011.4固件下載17111.5設備列舉模式17211.6沒有存在EEPROM17311.7存在著EEPROM, 第一個字節是0xB0 0xB4, FX系列11.8存在著EEPROM, 第一個字節是0xB2 0xB6, FX系列11.9配置字節0,FX系列17711.10重新設備列舉 ReNumerationTM 17811.11多重重新設備列舉 ReNumerationTM 17911.12預設描述符179第12章 EZUSB FX批量傳輸12.1簡介18812.2批量輸入傳輸18912.3中斷傳輸19112.4EZUSB FX批量IN的例子19112.5批量OUT傳輸19212.6端點對19412.7IN端點對的狀態19412.8OUT端點對的狀態19512.9使用批量緩沖區內存19512.10Data Toggle控制19612.11輪詢的批量傳輸的范例19712.12設備列舉說明19912.13批量端點中斷19912.14中斷批量傳輸的范例20112.15設備列舉說明20512.16自動指針器205第13章 EZUSB控制端點013.1簡介20913.2控制端點EP021013.3USB請求21213.3.1取得狀態 Get_Status 21413.3.2設置特性(Set_Feature)21713.3.3清除特性(Clear_Feature)21813.3.4取得描述符(Get_Descriptor)21913.3.5設置描述符(Set Descriptor)22313.3.6設置配置(Set_Configuration)22513.3.7取得配置(Get_Configuration)22513.3.8設置接口(Set_Interface)22513.3.9取得接口(Get_Interface)22613.3.10設置地址(Set_Address)22713.3.11同步幀22713.3.12固件加載228第14章 EZUSB FX等時傳輸14.1簡介22914.2等時IN傳輸23014.2.1初始化設置23014.2.2IN數據傳輸23014.3等時OUT傳輸23114.3.1初始化設置23114.3.2數據傳輸23214.4設置等時FIFO的大小23214.5等時傳輸速度23414.5.1EZUSB 2100系列23414.5.2EZUSB FX系列23514.6快速傳輸 僅存于2100系列 23614.6.1快速寫入23614.6.2快速讀取23714.7快速傳輸的時序 僅存于2100系列 23714.7.1快速寫入波形23814.7.2快速讀取波形23914.8快速傳輸速度(僅存于2100系列)23914.9其余的等時寄存器24014.9.1除能等時寄存器24014.9.20字節計數位24114.10以無數據來響應等時IN令牌24214.11使用等時FIFO242第15章 EZUSB FX中斷15.1簡介24315.2USB核心中斷24415.3喚醒中斷24415.4USB中斷信號源24515.5SUTOK與SUDAV中斷24815.6SOF中斷24915.7中止 suspend 中斷24915.8USB重置中斷24915.9批量端點中斷25015.10USB自動向量25015.11USB自動向量譯碼25115.12I2C中斷25215.13IN批量NAK中斷 僅存于AN2122/26與FX系列 25315.14I2C STOP反相中斷 僅存于AN2122/26與FX系列 25415.15從FIFO中斷 INT4 255第16章 EZUSB FX重置16.1簡介25716.2EZUSB FX打開電源重置 POR 25716.38051重置的釋放25916.3.1RAM的下載26016.3.2下載EEPROM26016.3.3外部ROM26016.48051重置所產生的影響26016.5USB總線重置26116.6EZUSB脫離26216.7各種重置狀態的總結263第17章 EZUSB FX電源管理17.1簡介26517.2中止 suspend 26617.3回復 resume 26717.4遠程喚醒 remote wakeup 269第18章 EZUSB FX系統18.1簡介27118.2DMA寄存器描述27218.2.1來源. 目的. 傳輸長度地址寄存器27218.2.2DMA起始與狀態寄存器27518.2.3DMA同步突發使能寄存器27518.2.4虛擬寄存器27818.3RD/FRD與WR/FWR DMA閃控的選擇27818.4DMA閃控波形與延伸位的交互影響27918.4.1DMA外部寫入27918.4.2DMA外部讀取280第19章 EZUSB FX寄存器19.1簡介28219.2批量數據緩沖區寄存器28319.3等時數據FIFO寄存器28419.4等時字節計數寄存器28519.5CPU寄存器28719.6I/O端口配置寄存器28819.7I/O端口A~C輸入/輸出寄存器28919.8230 Kbaud UART操作--AN2122/26寄存器29119.9等時控制/狀態寄存器29119.10I2C寄存器29219.11中斷29419.12端點0控制與狀態寄存器29919.13端點1~7的控制與狀態寄存器30019.14整體USB寄存器30519.15快速傳輸30919.16SETUP數據31119.17等時FIFO的容量大小31119.18通用I/F中斷使能31219.19通用中斷請求31219.20輸入/輸出端口寄存器D與E31319.20.1端口D輸出31319.20.2輸入端口D腳位31319.20.3端口D輸出使能31319.20.4端口E輸出31319.20.5輸入端口E腳位31419.20.6端口E輸出使能31419.21端口設置31419.22接口配置31419.23端口A與端口C切換配置31619.23.1端口A切換配置#231619.23.2端口C切換配置#231719.24DMA寄存器31919.24.1來源. 目的. 傳輸長度地址寄存器31919.24.2DMA起始與狀態寄存器32019.24.3DMA同步突發使能寄存器32019.24.4選擇8051 A/D總線作為外部FIFO321PART 3 固件技術篇第20章 EZUSB FX固件架構與函數庫20.1固件架構總覽32320.2固件架構的建立32520.3固件架構的副函數鉤子32520.3.1工作分配器32620.3.2設備請求 device request 32620.3.3USB中斷服務例程32920.4固件架構整體變量33220.5描述符表33320.5.1設備描述符33320.5.2配置描述符33420.5.3接口描述符33420.5.4端點描述符33520.5.5字符串描述符33520.5.6群組描述符33520.6EZUSB FX固件的函數庫33620.6.1包含文件 *.H 33620.6.2子程序33620.6.3整體變量33820.7固件架構的原始程序代碼338第21章 EZUSB FX固件范例程序21.1范例程序的簡介34621.2外圍I/O測試程序34721.3端點對, EP_PAIR范例35221.4批量測試, BulkTest范例36221.5等時傳輸, ISOstrm范例36821.6問題與討論373PART 4 實驗篇第22章 EZUSB FX仿真器22?1簡介37522?2所需的工具37622?3EZUSB FX框圖37722.4EZUSB最終版本的系統框圖37822?5第一次下載程序37822.6EZUSB FX開發系統框圖37922.7設置開發環境38022.8EZUSB FX開發工具組的內容38122.9EZUSB FX開發工具組軟件38222.9.1初步安裝程序38222.9.2確認主機 個人計算機 是否支持USB38222.10安裝EZUSB控制平臺. 驅動程序以及文件38322.11EZUSB FX開發電路板38522.11.1簡介38522.11.2開發電路板的瀏覽38522.11.3所使用的8051資源38622.11.4詳細電路38622.11.5LED的顯示38722.11.6Jumper38722.11.7連接器39122.11.8內存映象圖39222.11.9PLD信號39422.11.10PLD源文件文件39522.11.11雛形板的擴充連接器P1~P639722.11.12Philips PCF8574 I/O擴充IC40022.12DMA USB FX I/O LAB開發工具介紹40122.12.1USBFX簡介40122.12.2USBFX及外圍整體環境介紹40322?12?3USBFX與PC連接軟件介紹40422.12.4USBFX硬件功能介紹404第23章 LED顯示器輸出實驗23.1硬件設計與基本概念40923.2固件設計41023.3.1固件架構文件FW.C41123.3.2描述符文件DESCR.A5141223.3.3外圍接口文件PERIPH.C41723.4固件程序代碼的編譯與鏈接42123.5Windows程序, VB設計42323.6INF文件的編寫設計42423.7結論42623.8問題與討論427第24章 七段顯示器與鍵盤的輸入/輸出實驗24.1硬件設計與基本概念42824.2固件設計43124.2.1七段顯示器43124.2.24×4鍵盤掃描43324.3固件程序代碼的編譯與鏈接43424.4Windows程序, VB設計43624.5問題與討論437第25章 LCD文字型液晶顯示器輸出實驗25.1硬件設計與基本概念43825.1.1液晶顯示器LCD43825.2固件設計45225.3固件程序代碼的編譯與鏈接45625.4Windows程序, VB設計45725.5問題與討論458第26章 LED點陣輸出實驗26.1硬件設計與基本概念45926.2固件設計46326.3固件程序代碼的編譯與鏈接46326.4Windows程序, VB設計46526.5問題與討論465第27章 步進電機輸出實驗27.1硬件設計與基本概念46627.1.11相激磁46727.1.22相激磁46727.1.31-2相激磁46827?1?4PMM8713介紹46927.2固件設計47327.3固件程序代碼的編譯與鏈接47427.4Windows程序, VB設計47627.5問題與討論477第28章 I2C接口輸入/輸出實驗28.1硬件設計與基本概念47828.2固件設計48128.3固件程序代碼的編譯與鏈接48328.4Windows程序, VB設計48428.5問題與討論485第29章 A/D轉換器與D/A轉換器的輸入/輸出實驗29.1硬件設計與基本概念48629.1.1A/D轉換器48629.1.2D/A轉換器49029.2固件設計49329.2.1A/D轉換器的固件設計49329.2.2D/A轉換器的固件設計49629.3固件程序代碼的編譯與鏈接49729.4Windows程序, VB設計49829.5問題與討論499第30章 LCG繪圖型液晶顯示器輸出實驗30.1硬件設計與基本概念50030.1.1繪圖型LCD50030.1.2繪圖型LCD控制指令集50330.1.3繪圖型LCD讀取與寫入時序圖50530.2固件設計50630.2.1LCG驅動程序50630.2.2USB固件碼51330.3固件程序代碼的編譯與鏈接51630.4Windows程序, VB設計51730.5問題與討論518附錄A Cypress控制平臺的操作A.1EZUSB控制平臺總覽519A.2主畫面520A.3熱插拔新的USB設備521A.4各種工具欄的使用524A.5故障排除526A.6控制平臺的進階操作527A.7測試Unary Op工具欄上的按鈕功能528A.8測試制造商請求的工具欄 2100 系列的開發電路板 529A.9測試等時傳輸工具欄532A.10測試批量傳輸工具欄533A.11測試重置管線工具欄535A.12測試設置接口工具欄537A.13測試制造商請求工具欄 FX系列開發電路板A.14執行Get Device Descriptor 操作來驗證開發板的功能是否正確539A.15從EZUSB控制平臺中, 加載dev_io的范例并且加以執行540A.16從Keil偵錯應用程序中, 加載dev_io范例程序代碼, 然后再加以執行542A.17將dev_io 目標文件移開, 且使用Keil IDE 集成開發環境 來重建545A.18在偵錯器下執行dev_io目標文件, 并且使用具有偵錯能力的IDE547A.19在EZUSB控制平臺下, 執行ep_pair目標文件A.20如何修改fw范例, 并在開發電路板上產生等時傳輸550附錄BEZUSB 2100系列及EZUSB FX系列引腳表B.1EZUSB 2100系列引腳表555B?2EZUSB FX系列引腳圖表561附錄C EZUSB FX寄存器總覽附錄D EEPROM燒錄方式
上傳時間: 2013-11-21
上傳用戶:努力努力再努力
代碼大全電子版文件說明: cc1-5.pdf : 序言,目錄,1-5 章 cc6-10.pdf : 6-10 章 cc11-15.pdf : 11-15 章 cc16-20.pdf : 16-20 章 cc21-25.pdf : 21-25 章 cc26-30.pdf : 26-30 章 cc31-33.pdf : 31-33 章,致謝 readme.txt : 本文檔
上傳時間: 2015-05-10
上傳用戶:hphh
java圖形用戶界面 6.1 HelloWorldSwing 6.2 按鈕計數器 6.3 Swing按鈕 6.4 溫度轉換器 6.5 HtmlDemo 6.6 投票器 6.7 TextSamplerDemo 6.8 Swing菜單 6.9 文件對話框 6.10 月相 6.11 單位轉換器 6.12 Swing動畫
標簽: HelloWorldSwing HtmlDemo Swing TextS
上傳時間: 2014-01-20
上傳用戶:lhw888
Description Calculate a+b Input Two integer a,b (0<=a,b<=101000) Output Output a + b Sample Input 5 7 Sample Output 12
標簽: Description Calculate integer 101000
上傳時間: 2014-01-25
上傳用戶:tonyshao
電子通信系統的建模與仿真 第5章 數字通信系統的仿真 5.1 概述 5.2 信源 5.3 信源編碼 5.4 調制技術(模擬調制) 5.5 調制技術(數字調制) 5.6 多元調制仿真 5.7 差錯控制 5.8 交織與置亂 5.9 頻率合成 5.10 多址技術 5.11 信道仿真
上傳時間: 2013-12-23
上傳用戶:腳趾頭
一道程序編譯順序的考題,涉及到函數調用的先后順序及運算符號的優先級等問題。下面我展開給你講。 C的程序編譯總是從main函數開始的,這道題的重點在“fun((int)fun(a+c,b),a-c)) ”語句。 系統首先要確定最外層 fun()函數的實參,第一個參數的確定需要遞歸調用fun()函數(不妨稱其為內層函數)。內層函數的兩個參數分別為x=a+b=2+8=10、y=b=5,執行函數體x+y=10+5=15,于是得外層函數的參數x=15。其另一個參數y=a-c=2-b=-6,再次執行函數體,得最終返回值x+y=15+(-6)=9。
標簽: 程序編譯
上傳時間: 2014-12-03
上傳用戶:徐孺
/* ********************************************************************************************************* * uC/TCP-IP V2 * The Embedded TCP/IP Suite * * (c) Copyright 2003-2010; Micrium, Inc.; Weston, FL * * All rights reserved. Protected by international copyright laws. * * uC/TCP-IP is provided in source form to registered licensees ONLY. It is * illegal to distribute this source code to any third party unless you receive * written permission by an authorized Micrium representative. Knowledge of * the source code may NOT be used to develop a similar product. * * Please help us continue to provide the Embedded community with the finest * software available. Your honesty is greatly appreciated. * * You can contact us at www.micrium.com. ********************************************************************************************************* */ /* ********************************************************************************************************* * * NETWORK TCP LAYER * (TRANSMISSION CONTROL PROTOCOL) * * Filename : net_tcp.h * Version : V2.10 * Programmer(s) : ITJ ********************************************************************************************************* * Note(s) : (1) Supports Transmission Control Protocol as described in RFC #793 with the following * restrictions/constraints : * * (a) TCP Security & Precedence NOT supported RFC # 793, Section 3.6 * * (b) TCP Urgent Data NOT supported RFC # 793, Section 3.7 * 'The Communication of * Urgent Information' * * (c) The following TCP options NOT supported : * * (1) Window Scale RFC #1072, Section 2 * RFC #1323, Section 2 * (2) Selective Acknowledgement (SACK) RFC #1072, Section 3 * RFC #2018 * RFC #2883 * (3) TCP Echo RFC #1072, Section 4 * (4) Timestamp RFC #1323, Section 3.2 * (5) Protection Against Wrapped Sequences (PAWS) RFC #1323, Section 4 * * (d) #### IP-Options-to-TCP-Connection RFC #1122, Section 4.2.3.8 * Handling NOT supported * * (e) #### ICMP-Error-Message-to-TCP-Connection RFC #1122, Section 4.2.3.9 * Handling NOT currently supported * * (2) TCP Layer assumes/requires Network Socket Layer (see 'net_sock.h MODULE Note #1a2'). ********************************************************************************************************* */ /*$PAGE*/ /* ********************************************************************************************************* * MODULE * * Note(s) : (1) TCP Layer module is NOT required for UDP-to-Application API configuration. * * See also 'net_cfg.h TRANSPORT LAYER CONFIGURATION' * & 'net_cfg.h USER DATAGRAM PROTOCOL LAYER CONFIGURATION'. * * See also 'net_tcp.h Note #2'. * * (2) The following TCP-module-present configuration value MUST be pre-#define'd in * 'net_cfg_net.h' PRIOR to all other network modules that require TCP Layer * configuration (see 'net_cfg_net.h TCP LAYER CONFIGURATION Note #2b') : * * NET_TCP_MODULE_PRESENT ********************************************************************************************************* */ #ifdef NET_TCP_MODULE_PRESENT /* See Note #2. */ /* ********************************************************************************************************* * EXTERNS ********************************************************************************************************* */ #if ((defined(NET_TCP_MODULE)) && \ (defined(NET_GLOBALS_EXT))) #define NET_TCP_EXT #else #define NET_TCP_EXT extern #endif /*$PAGE*/ /* ********************************************************************************************************* * DEFINES ********************************************************************************************************* */ /* ********************************************************************************************************* * TCP HEADER DEFINES * * Note(s) : (1) The following TCP value MUST be pre-#define'd in 'net_def.h' PRIOR to 'net_buf.h' so that * the Network Buffer Module can configure maximum buffer header size (see 'net_def.h TCP * LAYER DEFINES' & 'net_buf.h NETWORK BUFFER INDEX & SIZE DEFINES Note #1') : * * (a) NET_TCP_HDR_SIZE_MAX 60 (NET_TCP_HDR_LEN_MAX * * NET_TCP_HDR_LEN_WORD_SIZE) * * (2) Urgent pointer & data NOT supported (see 'net_tcp.h Note #1b'). ********************************************************************************************************* */ #define NET_TCP_HDR_LEN_MASK 0xF000u #define NET_TCP_HDR_LEN_SHIFT 12u #define NET_TCP_HDR_LEN_NONE 0u #define NET_TCP_HDR_LEN_MIN 5u #define NET_TCP_HDR_LEN_MAX 15u #define NET_TCP_HDR_LEN_WORD_SIZE CPU_WORD_SIZE_32 #define NET_TCP_HDR_SIZE_MIN (NET_TCP_HDR_LEN_MIN * NET_TCP_HDR_LEN_WORD_SIZE) #if 0 /* See Note #1a. */ #define NET_TCP_HDR_SIZE_MAX (NET_TCP_HDR_LEN_MAX * NET_TCP_HDR_LEN_WORD_SIZE) #endif #define NET_TCP_HDR_SIZE_TOT_MIN (NET_IP_HDR_SIZE_TOT_MIN + NET_TCP_HDR_SIZE_MIN) #define NET_TCP_HDR_SIZE_TOT_MAX (NET_IP_HDR_SIZE_TOT_MAX + NET_TCP_HDR_SIZE_MAX) #define NET_TCP_PSEUDO_HDR_SIZE 12u /* = sizeof(NET_TCP_PSEUDO_HDR) */ #define NET_TCP_PORT_NBR_RESERVED NET_PORT_NBR_RESERVED #define NET_TCP_PORT_NBR_NONE NET_TCP_PORT_NBR_RESERVED #define NET_TCP_HDR_URG_PTR_NONE 0x0000u /* See Note #2. */ /*$PAGE*/ /* ********************************************************************************************************* * TCP HEADER FLAG DEFINES * * Note(s) : (1) See 'TCP HEADER Note #2' for flag fields. * * (2) Urgent pointer & data NOT supported (see 'net_tcp.h Note #1b'). ********************************************************************************************************* */ #define NET_TCP_HDR_FLAG_MASK 0x0FFFu #define NET_TCP_HDR_FLAG_NONE DEF_BIT_NONE #define NET_TCP_HDR_FLAG_RESERVED 0x0FE0u /* MUST be '0'. */ #define NET_TCP_HDR_FLAG_URGENT DEF_BIT_05 /* See Note #2. */ #define NET_TCP_HDR_FLAG_ACK DEF_BIT_04 #define NET_TCP_HDR_FLAG_PUSH DEF_BIT_03 #define NET_TCP_HDR_FLAG_RESET DEF_BIT_02 #define NET_TCP_HDR_FLAG_SYNC DEF_BIT_01 #define NET_TCP_HDR_FLAG_FIN DEF_BIT_00 #define NET_TCP_HDR_FLAG_CLOSE NET_TCP_HDR_FLAG_FIN /* ********************************************************************************************************* * TCP FLAG DEFINES ********************************************************************************************************* */ /* ------------------ NET TCP FLAGS ------------------- */ #define NET_TCP_FLAG_NONE DEF_BIT_NONE #define NET_TCP_FLAG_USED DEF_BIT_00 /* TCP conn cur used; i.e. NOT in free TCP conn pool. */ /* ------------------ TCP TX FLAGS ------------------- */ /* TCP tx flags copied from TCP hdr flags. */ #define NET_TCP_FLAG_TX_FIN NET_TCP_HDR_FLAG_FIN #define NET_TCP_FLAG_TX_CLOSE NET_TCP_FLAG_TX_FIN #define NET_TCP_FLAG_TX_SYNC NET_TCP_HDR_FLAG_SYNC #define NET_TCP_FLAG_TX_RESET NET_TCP_HDR_FLAG_RESET #define NET_TCP_FLAG_TX_PUSH NET_TCP_HDR_FLAG_PUSH #define NET_TCP_FLAG_TX_ACK NET_TCP_HDR_FLAG_ACK #define NET_TCP_FLAG_TX_URGENT NET_TCP_HDR_FLAG_URGENT #define NET_TCP_FLAG_TX_BLOCK DEF_BIT_07 /* ------------------ TCP RX FLAGS ------------------- */ #define NET_TCP_FLAG_RX_DATA_PEEK DEF_BIT_08 #define NET_TCP_FLAG_RX_BLOCK DEF_BIT_15 /*$PAGE*/ /* ********************************************************************************************************* * TCP TYPE DEFINES * * Note(s) : (1) NET_TCP_TYPE_&&& #define values specifically chosen as ASCII representations of the TCP * types. Memory displays of TCP types will display with their chosen ASCII names. ********************************************************************************************************* */ /* ------------------ NET TCP TYPES ------------------- */ #if (CPU_CFG_ENDIAN_TYPE == CPU_ENDIAN_TYPE_BIG) #define NET_TCP_TYPE_NONE 0x4E4F4E45u /* "NONE" in ASCII. */ #define NET_TCP_TYPE_CONN 0x54435020u /* "TCP " in ASCII. */ #else #if (CPU_CFG_DATA_SIZE == CPU_WORD_SIZE_32) #define NET_TCP_TYPE_NONE 0x454E4F4Eu /* "NONE" in ASCII. */ #define NET_TCP_TYPE_CONN 0x20504354u /* "TCP " in ASCII. */ #elif (CPU_CFG_DATA_SIZE == CPU_WORD_SIZE_16) #define NET_TCP_TYPE_NONE 0x4F4E454Eu /* "NONE" in ASCII. */ #define NET_TCP_TYPE_CONN 0x43542050u /* "TCP " in ASCII. */ #else /* Dflt CPU_WORD_SIZE_08. */ #define NET_TCP_TYPE_NONE 0x4E4F4E45u /* "NONE" in ASCII. */ #define NET_TCP_TYPE_CONN 0x54435020u /* "TCP " in ASCII. */ #endif #endif /* ********************************************************************************************************* * TCP SEQUENCE NUMBER DEFINES * * Note(s) : (1) TCP initial transmit sequence number is incremented by a fixed value, preferably a large * prime value or a large value with multiple unique factors. * * (a) One reasonable TCP initial transmit sequence number increment value example : * * 65527 = 37 * 23 * 11 * 7 * * * #### NET_TCP_TX_SEQ_NBR_CTR_INC could be developer-configured in 'net_cfg.h'. * * See also 'NET_TCP_TX_GET_SEQ_NBR() Notes #1b2 & #1c2'. ********************************************************************************************************* */ #define NET_TCP_SEQ_NBR_NONE 0u #define NET_TCP_ACK_NBR_NONE NET_TCP_SEQ_NBR_NONE #define NET_TCP_TX_SEQ_NBR_CTR_INC 65527u /* See Note #1. */ #define NET_TCP_ACK_NBR_DUP_WIN_SIZE_SCALE 4 /*$PAGE*/ /* ********************************************************************************************************* * TCP DATA/TOTAL LENGTH DEFINES * * Note(s) : (1) (a) TCP total length #define's (NET_TCP_TOT_LEN) relate to the total size of a complete * TCP packet, including the packet's TCP header. Note that a complete TCP packet MAY * be fragmented in multiple Internet Protocol packets. * * (b) TCP data length #define's (NET_TCP_DATA_LEN) relate to the data size of a complete * TCP packet, equal to the total TCP packet length minus its TCP header size. Note * that a complete TCP packet MAY be fragmented in multiple Internet Protocol packets. ********************************************************************************************************* */ /* See Notes #1a & #1b. */ #define NET_TCP_DATA_LEN_MIN 0u #define NET_TCP_TOT_LEN_MIN (NET_TCP_HDR_SIZE_MIN + NET_TCP_DATA_LEN_MIN) #define NET_TCP_TOT_LEN_MAX (NET_IP_TOT_LEN_MAX - NET_IP_HDR_SIZE_MIN ) #define NET_TCP_DATA_LEN_MAX (NET_TCP_TOT_LEN_MAX - NET_TCP_HDR_SIZE_MIN) /*$PAGE*/ /* ********************************************************************************************************* * TCP SEGMENT SIZE DEFINES * * Note(s) : (1) (a) RFC # 879, Section 3 states that the TCP Maximum Segment Size "counts only * data octets in the segment, ... not the TCP header or the IP header". * * (b) RFC #1122, Section 4.2.2.6 requires that : * * (1) "The MSS value to be sent in an MSS option must be less than or equal to * * (A) MMS_R - 20 * * where MMS_R is the maximum size for a transport-layer message that can * be received." * * (2) "If an MSS option is not received at connection setup, TCP MUST assume a * default send MSS of 536 (576 - 40)." * * See also 'net_ip.h IP DATA/TOTAL LENGTH DEFINES Note #1'. ********************************************************************************************************* */ /* See Note #1. */ #define NET_TCP_MAX_SEG_SIZE_DFLT (NET_IP_MAX_DATAGRAM_SIZE_DFLT - NET_IP_HDR_SIZE_MIN - NET_TCP_HDR_SIZE_MIN) #define NET_TCP_MAX_SEG_SIZE_DFLT_RX NET_TCP_DATA_LEN_MAX /* See Note #1b1. */ #define NET_TCP_MAX_SEG_SIZE_DFLT_TX NET_TCP_MAX_SEG_SIZE_DFLT /* See Note #1b2. */ #define NET_TCP_MAX_SEG_SIZE_NONE 0u #define NET_TCP_MAX_SEG_SIZE_MIN NET_TCP_MAX_SEG_SIZE_DFLT #define NET_TCP_MAX_SEG_SIZE_MAX NET_TCP_DATA_LEN_MAX #define NET_TCP_SEG_LEN_MIN NET_TCP_DATA_LEN_MIN #define NET_TCP_SEG_LEN_MAX NET_TCP_DATA_LEN_MAX #define NET_TCP_SEG_LEN_SYNC 1u #define NET_TCP_SEG_LEN_FIN 1u #define NET_TCP_SEG_LEN_CLOSE NET_TCP_SEG_LEN_FIN #define NET_TCP_SEG_LEN_ACK 0u #define NET_TCP_SEG_LEN_RESET 0u #define NET_TCP_SEG_LEN_PROBE 0u #define NET_TCP_DATA_LEN_TX_SYNC 0u #define NET_TCP_DATA_LEN_TX_FIN 0u #define NET_TCP_DATA_LEN_TX_CLOSE NET_TCP_DATA_LEN_TX_FIN #define NET_TCP_DATA_LEN_TX_ACK 0u #define NET_TCP_DATA_LEN_TX_PROBE_NO_DATA 0u #define NET_TCP_DATA_LEN_TX_PROBE_DATA 1u #define NET_TCP_DATA_LEN_TX_RESET 0u #define NET_TCP_TX_PROBE_DATA 0x00u /* ********************************************************************************************************* * TCP WINDOW SIZE DEFINES * * Note(s) : (1) Although NO RFC specifies the absolute minimum TCP connection window size value allowed, * RFC #793, Section 3.7 'Data Communication : Managing the Window' states that for "the * window ... there is an assumption that this is related to the currently available data * buffer space available for this connection". ********************************************************************************************************* */ #define NET_TCP_WIN_SIZE_NONE 0u #define NET_TCP_WIN_SIZE_MIN NET_TCP_MAX_SEG_SIZE_MIN #define NET_TCP_WIN_SIZE_MAX DEF_INT_16U_MAX_VAL /*$PAGE*/ /* ********************************************************************************************************* * TCP HEADER OPTIONS DEFINES * * Note(s) : (1) See the following RFC's for TCP options summary : * * (a) RFC # 793, Section 3.1 'Header Format : Options' * (b) RFC #1122; Sections 4.2.2.5, 4.2.2.6 * * (2) TCP option types are encoded in the first octet for each TCP option as follows : * * -------- * | TYPE | * -------- * * The TCP option type value determines the TCP option format : * * (a) The following TCP option types are single-octet TCP options -- i.e. the option type * octet is the ONLY octet for the TCP option. * * (1) TYPE = 0 End of Options List * (2) TYPE = 1 No Operation * * * (b) All other TCP options MUST be multi-octet TCP options (see RFC #1122, Section 4.2.2.5) : * * ------------------------------ * | TYPE | LEN | TCP OPT | * ------------------------------ * * where * TYPE Indicates the specific TCP option type * LEN Indicates the total TCP option length, in octets, including * the option type & the option length octets * TCP OPT Additional TCP option octets, if any, that contain the remaining * TCP option information * * The following TCP option types are multi-octet TCP options where the option's second * octet specify the total TCP option length, in octets, including the option type & the * option length octets : * * (1) TYPE = 2 Maximum Segment Size See RFC # 793, Section 3.1 'Header Format : * Options : Maximum Segment Size'; * RFC #1122, Section 4.2.2.6; * RFC # 879, Section 3 * * (2) TYPE = 3 Window Scale See 'net_tcp.h Note #1c1' * (3) TYPE = 4 SACK Allowed See 'net_tcp.h Note #1c2' * (4) TYPE = 5 SACK Option See 'net_tcp.h Note #1c2' * (5) TYPE = 6 Echo Request See 'net_tcp.h Note #1c3' * (6) TYPE = 7 Echo Reply See 'net_tcp.h Note #1c3' * (7) TYPE = 8 Timestamp See 'net_tcp.h Note #1c4' * * (3) TCP header allows for a maximum option list length of 40 octets : * * NET_TCP_HDR_OPT_SIZE_MAX = NET_TCP_HDR_SIZE_MAX - NET_TCP_HDR_SIZE_MIN * * = 60 - 20 * * = 40 * * (4) 'NET_TCP_OPT_SIZE' MUST be pre-defined PRIOR to all definitions that require TCP option * size data type. ********************************************************************************************************* */ /*$PAGE*/ #define NET_TCP_HDR_OPT_END_LIST 0u #define NET_TCP_HDR_OPT_NOP 1u #define NET_TCP_HDR_OPT_MAX_SEG_SIZE 2u #define NET_TCP_HDR_OPT_WIN_SCALE 3u #define NET_TCP_HDR_OPT_SACK_PERMIT 4u #define NET_TCP_HDR_OPT_SACK 5u #define NET_TCP_HDR_OPT_ECHO_REQ 6u #define NET_TCP_HDR_OPT_ECHO_REPLY 7u #define NET_TCP_HDR_OPT_TS 8u #define NET_TCP_HDR_OPT_PAD NET_TCP_HDR_OPT_END_LIST #define NET_TCP_HDR_OPT_LEN_END_LIST 1u #define NET_TCP_HDR_OPT_LEN_NOP 1u #define NET_TCP_HDR_OPT_LEN_MAX_SEG_SIZE 4u #define NET_TCP_HDR_OPT_LEN_WIN_SCALE 3u #define NET_TCP_HDR_OPT_LEN_SACK_PERMIT 2u #define NET_TCP_HDR_OPT_LEN_ECHO_REQ 6u #define NET_TCP_HDR_OPT_LEN_ECHO_REPLY 6u #define NET_TCP_HDR_OPT_LEN_TS 10u #define NET_TCP_HDR_OPT_LEN_SACK_MIN 6u #define NET_TCP_HDR_OPT_LEN_SACK_MAX 38u #define NET_TCP_HDR_OPT_LEN_MIN 1u #define NET_TCP_HDR_OPT_LEN_MIN_LEN 2u #define NET_TCP_HDR_OPT_LEN_MAX 38u typedef CPU_INT32U NET_TCP_OPT_SIZE; /* TCP opt size data type (see Note #4). */ #define NET_TCP_HDR_OPT_SIZE_WORD (sizeof(NET_TCP_OPT_SIZE)) #define NET_TCP_HDR_OPT_SIZE_MAX (NET_TCP_HDR_SIZE_MAX - NET_TCP_HDR_SIZE_MIN) #define NET_TCP_HDR_OPT_NBR_MIN 0u #define NET_TCP_HDR_OPT_NBR_MAX (NET_TCP_HDR_OPT_SIZE_MAX / NET_TCP_HDR_OPT_SIZE_WORD) #define NET_TCP_HDR_OPT_IX NET_TCP_HDR_SIZE_MIN /*$PAGE*/ /* ********************************************************************************************************* * TCP OPTION CONFIGURATION TYPE DEFINES * * Note(s) : (1) NET_TCP_OPT_CFG_TYPE_&&& #define values specifically chosen as ASCII representations of * the TCP option configuration types. Memory displays of TCP option configuration buffers * will display the TCP option configuration TYPEs with their chosen ASCII names. ********************************************************************************************************* */ /* ---------------- TCP OPT CFG TYPES ----------------- */ #if (CPU_CFG_ENDIAN_TYPE == CPU_ENDIAN_TYPE_BIG) #define NET_TCP_OPT_CFG_TYPE_NONE 0x4E4F4E45u /* "NONE" in ASCII. */ #define NET_TCP_OPT_CFG_TYPE_MAX_SEG_SIZE 0x4D535320u /* "MSS " in ASCII. */ #define NET_TCP_OPT_CFG_TYPE_WIN_SCALE 0x57494E20u /* "WIN " in ASCII (see 'net_tcp.h Note #1c1'). */ #define NET_TCP_OPT_CFG_TYPE_SACK_PERMIT 0x53434B50u /* "SCKP" in ASCII (see 'net_tcp.h Note #1c2'). */ #define NET_TCP_OPT_CFG_TYPE_SACK 0x5341434Bu /* "SACK" in ASCII (see 'net_tcp.h Note #1c2'). */ #define NET_TCP_OPT_CFG_TYPE_ECHO_REQ 0x45524551u /* "EREQ" in ASCII (see 'net_tcp.h Note #1c3'). */ #define NET_TCP_OPT_CFG_TYPE_ECHO_REPLY 0x4543484Fu /* "ECHO" in ASCII (see 'net_tcp.h Note #1c3'). */ #define NET_TCP_OPT_CFG_TYPE_TS 0x54532020u /* "TS " in ASCII (see 'net_tcp.h Note #1c4'). */ #else #if (CPU_CFG_DATA_SIZE == CPU_WORD_SIZE_32) #define NET_TCP_OPT_CFG_TYPE_NONE 0x454E4F4Eu /* "NONE" in ASCII. */ #define NET_TCP_OPT_CFG_TYPE_MAX_SEG_SIZE 0x2053534Du /* "MSS " in ASCII. */ #define NET_TCP_OPT_CFG_TYPE_WIN_SCALE 0x204E4957u /* "WIN " in ASCII (see 'net_tcp.h Note #1c1'). */ #define NET_TCP_OPT_CFG_TYPE_SACK_PERMIT 0x504B4353u /* "SCKP" in ASCII (see 'net_tcp.h Note #1c2'). */ #define NET_TCP_OPT_CFG_TYPE_SACK 0x4B434153u /* "SACK" in ASCII (see 'net_tcp.h Note #1c2'). */ #define NET_TCP_OPT_CFG_TYPE_ECHO_REQ 0x51455245u /* "EREQ" in ASCII (see 'net_tcp.h Note #1c3'). */ #define NET_TCP_OPT_CFG_TYPE_ECHO_REPLY 0x4F484345u /* "ECHO" in ASCII (see 'net_tcp.h Note #1c3'). */ #define NET_TCP_OPT_CFG_TYPE_TS 0x20205354u /* "TS " in ASCII (see 'net_tcp.h Note #1c4'). */ #elif (CPU_CFG_DATA_SIZE == CPU_WORD_SIZE_16) #define NET_TCP_OPT_CFG_TYPE_NONE 0x4F4E454Eu /* "NONE" in ASCII. */ #define NET_TCP_OPT_CFG_TYPE_MAX_SEG_SIZE 0x534D2053u /* "MSS " in ASCII. */ #define NET_TCP_OPT_CFG_TYPE_WIN_SCALE 0x4957204Eu /* "WIN " in ASCII (see 'net_tcp.h Note #1c1'). */ #define NET_TCP_OPT_CFG_TYPE_SACK_PERMIT 0x4353504Bu /* "SCKP" in ASCII (see 'net_tcp.h Note #1c2'). */ #define NET_TCP_OPT_CFG_TYPE_SACK 0x41534B43u /* "SACK" in ASCII (see 'net_tcp.h Note #1c2'). */ #define NET_TCP_OPT_CFG_TYPE_ECHO_REQ 0x52455145u /* "EREQ" in ASCII (see 'net_tcp.h Note #1c3'). */ #define NET_TCP_OPT_CFG_TYPE_ECHO_REPLY 0x43454F48u /* "ECHO" in ASCII (see 'net_tcp.h Note #1c3'). */ #define NET_TCP_OPT_CFG_TYPE_TS 0x53542020u /* "TS " in ASCII (see 'net_tcp.h Note #1c4'). */ #else /* Dflt CPU_WORD_SIZE_08. */ #define NET_TCP_OPT_CFG_TYPE_NONE 0x4E4F4E45u /* "NONE" in ASCII. */ #define NET_TCP_OPT_CFG_TYPE_MAX_SEG_SIZE 0x4D535320u /* "MSS " in ASCII. */ #define NET_TCP_OPT_CFG_TYPE_WIN_SCALE 0x57494E20u /* "WIN " in ASCII (see 'net_tcp.h Note #1c1'). */ #define NET_TCP_OPT_CFG_TYPE_SACK_PERMIT 0x53434B50u /* "SCKP" in ASCII (see 'net_tcp.h Note #1c2'). */ #define NET_TCP_OPT_CFG_TYPE_SACK 0x5341434Bu /* "SACK" in ASCII (see 'net_tcp.h Note #1c2'). */ #define NET_TCP_OPT_CFG_TYPE_ECHO_REQ 0x45524551u /* "EREQ" in ASCII (see 'net_tcp.h Note #1c3'). */ #define NET_TCP_OPT_CFG_TYPE_ECHO_REPLY 0x4543484Fu /* "ECHO" in ASCII (see 'net_tcp.h Note #1c3'). */ #define NET_TCP_OPT_CFG_TYPE_TS 0x54532020u /* "TS " in ASCII (see 'net_tcp.h Note #1c4'). */ #endif #endif /*$PAGE*/ /* ********************************************************************************************************* * TCP CONNECTION TIMEOUT DEFINES * * Note(s) : (1) (a) (1) RFC #1122, Section 4.2.2.13 'DISCUSSION' states that "the graceful close algorithm * of TCP requires that the connection state remain defined on (at least) one end of * the connection, for a timeout period of 2xMSL ... During this period, the (remote * socket, local socket) pair that defines the connection is busy and cannot be reused". * * (2) The following sections reiterate that the TIME-WAIT state timeout scalar is two * maximum segment lifetimes (2 MSL) : * * (A) RFC #793, Section 3.9 'Event Processing : SEGMENT ARRIVES : * Check Sequence Number : TIME-WAIT STATE' * (B) RFC #793, Section 3.9 'Event Processing : SEGMENT ARRIVES : * Check FIN Bit : TIME-WAIT STATE' * * (b) (1) RFC #793, Section 3.3 'Sequence Numbers : Knowing When to Keep Quiet' states that * "the Maximum Segment Lifetime (MSL) is ... to be 2 minutes. This is an engineering * choice, and may be changed if experience indicates it is desirable to do so". * * (2) Microsoft Corporation's Windows XP defaults MSL to 15 seconds. ********************************************************************************************************* */ /* Max seg timeout (see Note #1b) : */ #define NET_TCP_CONN_TIMEOUT_MAX_SEG_MIN_SEC ( 0u ) /* ... min = 0 seconds */ #define NET_TCP_CONN_TIMEOUT_MAX_SEG_MAX_SEC ( 2u * DEF_TIME_NBR_SEC_PER_MIN) /* ... max = 2 minutes */ #define NET_TCP_CONN_TIMEOUT_MAX_SEG_DFLT_SEC ( 15u ) /* ... dflt = 15 seconds */ #define NET_TCP_CONN_TIMEOUT_MAX_SEG_SCALAR 2u /* ... scalar (see Note #1a). */ #define NET_TCP_CONN_TIMEOUT_CONN_DFLT_SEC (120u * DEF_TIME_NBR_SEC_PER_MIN) /* Dflt conn timeout = 120 minutes */ #define NET_TCP_CONN_TIMEOUT_USER_DFLT_SEC ( 30u * DEF_TIME_NBR_SEC_PER_MIN) /* Dflt user timeout = 30 minutes */ /*$PAGE*/ /* ********************************************************************************************************* * TCP CONNECTION STATES * * Note(s) : (1) See the following RFC's for TCP state machine summary : * * (a) RFC # 793; Sections 3.2, 3.4, 3.5, 3.9 * (b) RFC #1122; Sections 4.2.2.8, 4.2.2.10, 4.2.2.11, 4.2.2.13, 4.2.2.18, 4.2.2.20 * * (2) (a) #### Additional closing-data-available state used for closing connections to allow the * application layer to receive any remaining data. * * See also 'net_tcp.c NetTCP_RxPktConnHandlerFinWait1() Note #2f5A2', * 'net_tcp.c NetTCP_RxPktConnHandlerFinWait2() Note #2f5B', * 'net_tcp.c NetTCP_RxPktConnHandlerClosing() Note #2d2B2a1B', * & 'net_tcp.c NetTCP_RxPktConnHandlerLastAck() Note #2d2A1b'. ********************************************************************************************************* */ #define NET_TCP_CONN_STATE_NONE 0u #define NET_TCP_CONN_STATE_FREE 1u #define NET_TCP_CONN_STATE_CLOSED 10u #define NET_TCP_CONN_STATE_LISTEN 20u #define NET_TCP_CONN_STATE_SYNC_RXD 30u #define NET_TCP_CONN_STATE_SYNC_RXD_PASSIVE 31u #define NET_TCP_CONN_STATE_SYNC_RXD_ACTIVE 32u #define NET_TCP_CONN_STATE_SYNC_TXD 35u #define NET_TCP_CONN_STATE_CONN 40u #define NET_TCP_CONN_STATE_FIN_WAIT_1 50u #define NET_TCP_CONN_STATE_FIN_WAIT_2 51u #define NET_TCP_CONN_STATE_CLOSING 52u #define NET_TCP_CONN_STATE_TIME_WAIT 53u #define NET_TCP_CONN_STATE_CLOSE_WAIT 55u #define NET_TCP_CONN_STATE_LAST_ACK 56u #define NET_TCP_CONN_STATE_CLOSING_DATA_AVAIL 59u /* See Note #2a. */ /* ********************************************************************************************************* * TCP CONNECTION QUEUE STATES ********************************************************************************************************* */ #define NET_TCP_RX_Q_STATE_NONE 0u #define NET_TCP_RX_Q_STATE_CLOSED 100u #define NET_TCP_RX_Q_STATE_CLOSING 101u #define NET_TCP_RX_Q_STATE_SYNC 110u #define NET_TCP_RX_Q_STATE_CONN 111u #define NET_TCP_TX_Q_STATE_NONE 0u #define NET_TCP_TX_Q_STATE_CLOSED 200u #define NET_TCP_TX_Q_STATE_CLOSING 201u #define NET_TCP_TX_Q_STATE_SYNC 210u #define NET_TCP_TX_Q_STATE_CONN 211u #define NET_TCP_TX_Q_STATE_SUSPEND 215u #define NET_TCP_TX_Q_STATE_CLOSED_SUSPEND 220u #define NET_TCP_TX_Q_STATE_CLOSING_SUSPEND 221u /*$PAGE*/ /* ********************************************************************************************************* * TCP CONNECTION CODE DEFINES **************
上傳時間: 2015-11-22
上傳用戶:the same kong
# include<stdio.h> # include<math.h> # define N 3 main(){ float NF2(float *x,float *y); float A[N][N]={{10,-1,-2},{-1,10,-2},{-1,-1,5}}; float b[N]={7.2,8.3,4.2},sum=0; float x[N]= {0,0,0},y[N]={0},x0[N]={}; int i,j,n=0; for(i=0;i<N;i++) { x[i]=x0[i]; } for(n=0;;n++){ //計算下一個值 for(i=0;i<N;i++){ sum=0; for(j=0;j<N;j++){ if(j!=i){ sum=sum+A[i][j]*x[j]; } } y[i]=(1/A[i][i])*(b[i]-sum); //sum=0; } //判斷誤差大小 if(NF2(x,y)>0.01){ for(i=0;i<N;i++){ x[i]=y[i]; } } else break; } printf("經過%d次雅可比迭代解出方程組的解:\n",n+1); for(i=0;i<N;i++){ printf("%f ",y[i]); } } //求兩個向量差的二范數函數 float NF2(float *x,float *y){ int i; float z,sum1=0; for(i=0;i<N;i++){ sum1=sum1+pow(y[i]-x[i],2); } z=sqrt(sum1); return z; }
上傳時間: 2019-10-13
上傳用戶:大萌萌撒
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上傳時間: 2022-06-06
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