4.asm…… 響鈴程序,輸入一個(gè)數(shù)字字符N,響鈴N次。(完成)ysk3.asm ……顯示一個(gè)星型倒三角。m1.asm ………編程將鍵盤(pán)輸入的8位無(wú)符號(hào)二進(jìn)制數(shù)轉(zhuǎn)化為十六進(jìn)制數(shù)和十進(jìn)制數(shù),并輸出結(jié)果form.asm ……采用子程序編程按以下三種格式(██,◣,◥)打印九九乘法表:(完成)char.asm ……小寫(xiě)字母a b c d ……x y z的ASCII碼分別為61H 62H 63H 64H……78H 79H 7AH, 而大寫(xiě)字母A B C D ….X Y Z的ASCII碼分別為41H 42H 43H 44H …58H 59H 5AH, 使用串處理指令編程從鍵盤(pán)輸入16個(gè)字符(大小寫(xiě)字母及其它字母均有), 存入以BUF1開(kāi)始的一片存儲(chǔ)區(qū)中,并將其傳送到以BUF2開(kāi)始的一片存儲(chǔ)區(qū)中, 在傳送是將其中的小寫(xiě)字母均改為大寫(xiě)字母,并將第一個(gè)小寫(xiě)字母在串中的位置 (距串頭BUF1的相對(duì)位移量)以十六進(jìn)制形式輸出。(完成)
上傳時(shí)間: 2013-12-22
上傳用戶:zhyiroy
This section contains a brief introduction to the C language. It is intended as a tutorial on the language, and aims at getting a reader new to C started as quickly as possible. It is certainly not intended as a substitute for any of the numerous textbooks on C. 2. write a recursive function FIB (n) to find out the nth element in theFibanocci sequence number which is 1,1,2,3,5,8,13,21,34,55,…3. write the prefix and postfix form of the following infix expressiona + b – c / d + e * f – g * h / i ^ j4. write a function to count the number of nodes in a binary tr
標(biāo)簽: introduction the contains intended
上傳時(shí)間: 2013-12-23
上傳用戶:liansi
Implemented BFS, DFS and A* To compile this project, use the following command: g++ -o search main.cpp Then you can run it: ./search The input is loaded from a input file in.txt Here is the format of the input file: The first line of the input file shoud contain two chars indicate the source and destination city for breadth first and depth first algorithm. The second line of input file shoud be an integer m indicate the number of connections for the map. Following m lines describe the map, each line represents to one connection in this form: dist city1 city2, which means there is a connection between city1 and city2 with the distance dist. The following input are for A* The following line contains two chars indicate the source and destination city for A* algorithm. Then there is an integer h indicate the number of heuristic. The following h lines is in the form: city dist which means the straight-line distance from the city to B is dist.
標(biāo)簽: Implemented following compile command
上傳時(shí)間: 2014-01-01
上傳用戶:lhc9102
BNB20 Finds the constrained minimum of a function of several possibly integer variables. % Usage: [errmsg,Z,X,t,c,fail] = % BNB20(fun,x0,xstatus,xlb,xub,A,B,Aeq,Beq,nonlcon,settings,options,P1,P2,...) % % BNB solves problems of the form: % Minimize F(x) subject to: xlb <= x0 <=xub % A*x <= B Aeq*x=Beq % C(x)<=0 Ceq(x)=0 % x(i) is continuous for xstatus(i)=0 % x(i) integer for xstatus(i)= 1 % x(i) fixed for xstatus(i)=2 %
標(biāo)簽: constrained variables function possibly
上傳時(shí)間: 2014-01-13
上傳用戶:youth25
16 relay output channels and 16 isolated digital input channels LED indicators to show activated relays Jumper selectable Form A/Form B-type relay output channel Output status read-back Keep relay output values when hot system reset High-voltage isolation on input channels(2,500 VDC) Hi ESD protection(2,00VDC) High over-voltage protection(70VDC) Wide input range(10~50VDC) Interrupt handling capability High-density DB-62 connector Board ID
標(biāo)簽: channels indicators activated isolated
上傳時(shí)間: 2016-02-15
上傳用戶:dongbaobao
一個(gè)實(shí)現(xiàn)全程跟蹤服務(wù)的物流管理系統(tǒng)。采用PHP+mysql開(kāi)發(fā),附帶所有源程序及數(shù)據(jù)表。-A follow-up services to achieve the whole system of logistics management. Developed using PHP+ mysql, with all source code and data in table form.
標(biāo)簽: php+mysql物流配送網(wǎng)
上傳時(shí)間: 2015-06-11
上傳用戶:liumangxiao
/* ********************************************************************************************************* * 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(shí)間: 2015-11-22
上傳用戶:the same kong
近年來(lái),隨著多媒體技術(shù)、計(jì)算機(jī)網(wǎng)絡(luò)與通信技術(shù)的的快速發(fā)展,傳統(tǒng)的監(jiān)控系統(tǒng)也不斷向著新的發(fā)展方向進(jìn)行著不斷的更新與發(fā)展。進(jìn)而隨著嵌入式技術(shù)的出現(xiàn)以及人們對(duì)降低監(jiān)控系統(tǒng)成本和提高可靠性的迫切需求,基于嵌入式系統(tǒng)的網(wǎng)絡(luò)視頻監(jiān)控系統(tǒng)將成為新的研發(fā)熱點(diǎn)。 本文的目的是把嵌入式技術(shù)與計(jì)算機(jī)網(wǎng)絡(luò)技術(shù)相結(jié)合,構(gòu)造一個(gè)性能穩(wěn)定且具有較強(qiáng)處理能力的數(shù)字化遠(yuǎn)程視頻監(jiān)控系統(tǒng)。該監(jiān)控系統(tǒng)以嵌入式Linux系統(tǒng)平臺(tái)作為服務(wù)器端,服務(wù)器程序在其上以后臺(tái)方式運(yùn)行,等待監(jiān)控系統(tǒng)環(huán)境中的客戶機(jī)使用瀏覽器向其發(fā)送訪問(wèn)請(qǐng)求,實(shí)現(xiàn)在局域網(wǎng)乃至Internet網(wǎng)上對(duì)攝像頭的遠(yuǎn)程控制。 文中把系統(tǒng)設(shè)計(jì)分為三大部分:系統(tǒng)硬件設(shè)計(jì)、嵌入式Linux在硬件平臺(tái)的實(shí)現(xiàn)和系統(tǒng)軟件設(shè)計(jì)。硬件設(shè)計(jì)部分首先提出了整個(gè)硬件系統(tǒng)的實(shí)現(xiàn)方案,接著詳細(xì)介紹了S3C2410處理器與存儲(chǔ)器、以太網(wǎng)控制器芯片以及USB和串口的接口電路設(shè)計(jì);第二部分詳細(xì)敘述了嵌入式Linux在本系統(tǒng)硬件平臺(tái)的移植實(shí)現(xiàn)及應(yīng)用程序的開(kāi)發(fā)特點(diǎn),重點(diǎn)講述了本系統(tǒng)平臺(tái)上Linux的引導(dǎo)加載程序Bootloader的設(shè)計(jì)過(guò)程;系統(tǒng)軟件部分首先介紹了USB接口攝像頭驅(qū)動(dòng)在嵌入式Linux下的實(shí)現(xiàn),重點(diǎn)講述了Video4Linux下視頻采集的實(shí)現(xiàn),接著論述了如何實(shí)現(xiàn)圖像的JPEG壓縮,最后針對(duì)基于B/S模式的網(wǎng)絡(luò)通信系統(tǒng)結(jié)構(gòu),詳細(xì)闡述了網(wǎng)絡(luò)通信的具體實(shí)現(xiàn)過(guò)程和方法。 最后在辦公室局域網(wǎng)通過(guò)對(duì)系統(tǒng)測(cè)試,顯示了系統(tǒng)運(yùn)行結(jié)果,實(shí)現(xiàn)了利用局域網(wǎng)或Internet網(wǎng)對(duì)遠(yuǎn)程環(huán)境進(jìn)行監(jiān)控的功能。
標(biāo)簽: ARM 網(wǎng)絡(luò)視頻監(jiān)控 系統(tǒng)設(shè)計(jì)
上傳時(shí)間: 2013-07-04
上傳用戶:lgnf
永磁同步發(fā)電機(jī)由于一系列高效節(jié)能的優(yōu)點(diǎn),在工農(nóng)業(yè)生產(chǎn)、航空航天、國(guó)防和日常生活中得到廣泛應(yīng)用,并且受到許多學(xué)者的關(guān)注,其研究領(lǐng)域主要涉及永磁同步發(fā)電機(jī)的設(shè)計(jì)、精確性能分析、控制等方面。 本課題作為國(guó)家自然科學(xué)基金項(xiàng)目《無(wú)刷無(wú)勵(lì)磁機(jī)諧波勵(lì)磁的混合勵(lì)磁永磁電機(jī)的研究》的課題,主要研究永磁電機(jī)的電磁場(chǎng)空載和負(fù)載計(jì)算,求出永磁電機(jī)的電壓波形和電壓調(diào)整率,為分段式轉(zhuǎn)子的混合勵(lì)磁永磁電機(jī)的研究奠定基礎(chǔ),主要做了以下工作: 首先介紹了永磁同步發(fā)電機(jī)的基本原理,包括永磁同步發(fā)電機(jī)的結(jié)構(gòu)形式和永磁同步發(fā)電機(jī)的運(yùn)行性能,采用傳統(tǒng)解析理論給出了電壓調(diào)整率的計(jì)算方法及外特性的計(jì)算模型;然后用有限元ANSYS對(duì)永磁同步發(fā)電機(jī)樣機(jī)進(jìn)行實(shí)體建模,經(jīng)過(guò)定義分配材料、劃分網(wǎng)格、加邊界條件和載荷、求解計(jì)算等,得到矢量磁位Az、磁場(chǎng)強(qiáng)度H、磁感應(yīng)強(qiáng)度B等結(jié)果,直觀地看出電機(jī)內(nèi)部的磁場(chǎng)分布情況。 其次根據(jù)電磁場(chǎng)計(jì)算結(jié)果,應(yīng)用齒磁通法對(duì)其進(jìn)行后處理。該方法求解轉(zhuǎn)子在一個(gè)齒距內(nèi)不同位置處的磁場(chǎng),以定子齒的磁通為計(jì)算單位,根據(jù)繞組與齒的匝鏈關(guān)系,計(jì)算出磁鏈隨時(shí)間的變化,進(jìn)而得到永磁同步發(fā)電機(jī)空、負(fù)載時(shí)電壓大小及波形。通過(guò)計(jì)算結(jié)果寫(xiě)實(shí)驗(yàn)結(jié)果對(duì)比,驗(yàn)證了齒磁通法的正確性,為計(jì)算永磁同步發(fā)電機(jī)各種性能特性提供有力工具。 最后,基于齒磁通法對(duì)永磁同步發(fā)電機(jī)的外特性進(jìn)行了深入研究,定量分析了結(jié)構(gòu)參數(shù)對(duì)外特性的影響規(guī)律,提出了有效降低電壓調(diào)整率的方法的是:增加氣隙長(zhǎng)度g的同時(shí),適當(dāng)增加永磁體的磁化方向的長(zhǎng)度hm;此外,要盡量的減少每相串聯(lián)匝數(shù)N和增大導(dǎo)線面積以減小阻抗參數(shù)。通過(guò)改變電機(jī)的結(jié)構(gòu)參數(shù),對(duì)其電磁場(chǎng)進(jìn)行計(jì)算,找到永磁電機(jī)電壓調(diào)整率的變化規(guī)律,為加電勵(lì)磁的混合勵(lì)磁永磁電機(jī)做準(zhǔn)備,達(dá)到穩(wěn)定輸出電壓的目的。
標(biāo)簽: 永磁同步 發(fā)電機(jī) 磁場(chǎng)分析
上傳時(shí)間: 2013-04-24
上傳用戶:15853744528
心音信號(hào)是人體最重要的生理信號(hào)之一,包含心臟各個(gè)部分如心房、心室、大血管、心血管及各個(gè)瓣膜功能狀態(tài)的大量生理病理信息。心音信號(hào)分析與識(shí)別是了解心臟和血管狀態(tài)的一種不可缺少的手段。本文針對(duì)目前該研究領(lǐng)域中存在的分析方法問(wèn)題和分類識(shí)別技術(shù)難點(diǎn)展開(kāi)了深入的研究,內(nèi)容涉及心音構(gòu)成的分析、心音信號(hào)特征向量的提取、正常心音信號(hào)(NM)和房顫(AF)、主動(dòng)脈回流(AR)、主動(dòng)脈狹窄(AS)、二尖瓣回流(MR)4種心臟雜音信號(hào)的分類識(shí)別。本文的工作內(nèi)容包括以下5個(gè)方面: a)心音信號(hào)采集與預(yù)處理。本文采用自行研制的帶有錄音機(jī)功能的聽(tīng)診器實(shí)現(xiàn)對(duì)心音信號(hào)的采集。通過(guò)對(duì)心音信號(hào)噪聲分析,選用小波降噪作為心音信號(hào)的濾波方法。根據(jù)實(shí)驗(yàn)分析,選擇Donoho閾值函數(shù)結(jié)合多級(jí)閾值的方法作為心音信號(hào)預(yù)處理方案。 b)心音信號(hào)時(shí)頻分析方法。文中采用5種時(shí)頻分析方法分別對(duì)心音信號(hào)進(jìn)行了時(shí)頻譜特性分析,結(jié)果表明:不同的時(shí)頻分析方法與待分析心音信號(hào)的特性有密切關(guān)系,即需要在小的交叉項(xiàng)干擾與高的時(shí)頻分辨率之間作綜合的考慮。鑒于此,本文提出了一種自適應(yīng)錐形核時(shí)頻(ATF)分析方法,通過(guò)實(shí)驗(yàn)驗(yàn)證該分布能較好地反映心音信號(hào)的時(shí)頻結(jié)構(gòu),其性能優(yōu)于一般錐形核分布(CKD)以及Choi-Williams分布(CWD)、譜圖(SPEC)等固定核時(shí)頻分析方法,從而選擇自應(yīng)錐形核時(shí)頻分析方法進(jìn)行心音信號(hào)分析。 c)心音信號(hào)特征向量提取。根據(jù)對(duì)3M Littmann() Stethoscopes[31]數(shù)據(jù)庫(kù)中標(biāo)準(zhǔn)心音信號(hào)的時(shí)頻分析結(jié)果,提取8組特征數(shù)據(jù),通過(guò)Fihser降維處理方法提取出了實(shí)現(xiàn)分類可視化,且最易于分類的心音信號(hào)的2維特征向量,作為心音信號(hào)分類的特征向量。 d)心音信號(hào)分類方法。根據(jù)心音信號(hào)特征向量組成的散點(diǎn)圖,研究了支持向量機(jī)核函數(shù)、多分類支持向量機(jī)的選取方法,同時(shí),基于分類的目的 性和可信性,本文提出以分類精度最大為判斷準(zhǔn)則的核函數(shù)參數(shù)與松弛變量的優(yōu)化方法,建立了心音信號(hào)分類的支持向量機(jī)模型,選取標(biāo)準(zhǔn)數(shù)據(jù)庫(kù)中NM、AF、AR、AS、MR每類心音信號(hào)的80組2維特征向量中每類60組數(shù)據(jù)作為支持向量機(jī)的學(xué)習(xí)樣本,對(duì)余下的每類20組數(shù)據(jù)進(jìn)行測(cè)試,得到每類的分類精度(Ar)均為100%,同時(shí)對(duì)臨床上采集的與上述4種同類心臟雜音信號(hào)和正常心音信號(hào)中每類24個(gè)心動(dòng)周期進(jìn)行分類實(shí)測(cè),分類精度分別為:NM、AF、MR的分類精度均為100%,而AR、AS均為95.83%,驗(yàn)證了該方法的分類有效性。 e)心音信號(hào)分析與識(shí)別的軟件系統(tǒng)。本文以MATLAB語(yǔ)言的可視化功能實(shí)現(xiàn)了心音信號(hào)分析與識(shí)別的軟件運(yùn)行平臺(tái)構(gòu)建,可完成對(duì)心音信號(hào)的讀取、預(yù)處理,繪制時(shí)-頻、能量特性的三維圖及兩維等高線圖;同時(shí),利用MATLAB與EXCEL的動(dòng)態(tài)鏈接,實(shí)現(xiàn)對(duì)心音信號(hào)分析數(shù)據(jù)的存儲(chǔ)以及統(tǒng)計(jì)功能;最后,通過(guò)對(duì)心音信號(hào)2維特征向量的分析,實(shí)現(xiàn)心音信號(hào)的自動(dòng)識(shí)別功能。 本文的研究特色主要體現(xiàn)在心音信號(hào)特征向量提取的方法以及多分類支持向量機(jī)模型的建立兩方面。 綜上所述,本文從理論與實(shí)踐兩方面對(duì)心音信號(hào)進(jìn)行了深入的研究,主要是采用自適應(yīng)錐形核時(shí)頻分析方法提取心音信號(hào)特征向量,根據(jù)心音信號(hào)特征向量組成的散點(diǎn)圖,建立心音信號(hào)分類的支持向量機(jī)模型,并對(duì)正常心音信號(hào)和4種心臟雜音信號(hào)進(jìn)行了分類研究,取得了較為滿意的分類結(jié)果,但由于用于分類的心臟雜音信號(hào)種類及數(shù)據(jù)量尚不足,因此,今后的工作重點(diǎn)是采集更多種類的心臟雜音信號(hào),進(jìn)一步提高心音信號(hào)分類精度,使本文研究成果能最終應(yīng)用于臨床心臟量化聽(tīng)診。 關(guān)鍵詞:心音信號(hào),小波降噪,非平穩(wěn)信號(hào),心臟雜音,信號(hào)處理,時(shí)頻分析,自適應(yīng),支持向量機(jī)
上傳時(shí)間: 2013-04-24
上傳用戶:weixiao99
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