removed development folder

This commit is contained in:
2024-06-14 17:58:00 -04:00
parent a50d92c3a3
commit 68223c7d4c
9 changed files with 0 additions and 1067 deletions
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all: client server
client:
go build -o ekho client.go
server:
go build -o motd server.go
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// =============================================================================
// Auth: alex
// File: client.go
// Revn: 10-05-2023 2.0
// Func: ask server for a message of the day quote
//
// TODO: document
// expand on /ba/ failures
// add more flags?
// log errors in logfile
// =============================================================================
// CHANGE LOG
// -----------------------------------------------------------------------------
// 05-11-2022: init
// 05-17-2022: changed an entry in the response table
// 08-16-2023: copied from speak.go
// gutted, rewrote
// 09-12-2023: added size conversation
// added -d, -l, and -dest flags
// commented
// 09-21-2023: began complete-ass overhaul of handle() system
// wrote draft of draw()
// 09-26-2023: made draw return size and reference globals
// imported check() from soary
// 09-29-2023: commented handle()
//*10-02-2023: commented main(), and friends
//*10-05-2023: /remove/ works
// removed -d flag
// commented
//
// =============================================================================
package main
import (
"io" // io.EOF
"flag" // BoolVar, StringVar, Parse
"fmt" // Println
"math/rand" // NewSource, New, Intn, *rand.Rand
"net" // ResolveTCPAddr, DialTCP, conn.Write,Read
"os" // Exit
"strconv" // Atoi, Itoa
"strings" // Split
"time" // Now, UnixNano
)
// print errors if they occur, quit
func check( err error ) {
var errep string // declare error report string
switch err { // switch case over error input
case nil: // if there was no error
// then there was no error
errep = "err is nil"
case io.EOF: // if there was an End Of File error
errep = "Error: " + err.Error() // document error
conn.Close() // close connection
default: // anything besides those are a big deal
errep = "Fatal: " + err.Error()
}
var critical bool // declare critical error flag
// must be neither nil nor EOF
critical = err != nil && err != io.EOF
if critical { // XXX critical print
// TODO at some point, critical should be logging instead of
// printing, only verbose should print
fmt.Println( "check() -> ", errep )
}
if critical { // if there was a critical error
os.Exit( 1 ) // cut and run
}
}
// get user input
func in( prompt string ) string {
fmt.Print( prompt ) // print user prompt
var input string // declare var to hold user input
fmt.Scanln( &input ) // get user input
// try to convert to an int, discard results
_, err := strconv.Atoi( input )
// if there was an error, user didn't input an int
if err != nil {
// warn user against this
fmt.Println( "Input must be a number" )
input = in( prompt ) // try to get user input again
// this, like handle() calling handle(), seems like a super
// bad idea, stack-wise...
}
// once user has properly inputted a number, return string of num
return input
}
// seed and get a new rng
func seed() *rand.Rand {
// use current time to seed random number
s := rand.NewSource( time.Now().UnixNano() )
r := rand.New( s ) // create new random number from seed
return r // return random number
}
// get a random number
func draw() string {
rn := seed() // get a random seed
r := rn.Intn( qsize ) // get a random number using seed
// convert random number to ascii, because converting
// ints to bytes ( for networking ) and back is obnoxious
rsz := strconv.Itoa( r )
return rsz // return rand size
}
// get server response and print
func handle( conn net.Conn ) {
var buffer [512]byte // create buffer to hold response
// read n bytes from server into buffer ( byte slice )
n, err := conn.Read( buffer[:] )
check( err ) // check for errors
// split recv'd message over @, separate header from message
msg := strings.Split( string( buffer[:n] ), "@" )
var resp string // declare response variable
switch msg[0] { // switch/case over the header
// if message is...
case "sa": // /sa/, size answer
// convert back half to int, catch error
size, nerr := strconv.Atoi( msg[1] )
if nerr == nil { // if there was no error
qsize = size // set size global to recv'd size
} else {
// if int conversion failed, just quit
// TODO make more robust
os.Exit( 1 )
}
req := draw() // draw a random number
resp = "qr@" + req // create quote query with rng
case "ba": // /ba/, bad answer
// TODO create server-side, and handle client-side
fmt.Println( "error in " + msg[1] + ": " + msg[2] )
resp = "te@error" // set transaction end message
case "qa": // /qa/, quote answer
fmt.Println( msg[1] ) // whole-ass just print quote
resp = "te@success" // set transaction end message
case "la": // /la/, list answer
// split recv'd message over newline to create quote list
quotes := strings.Split( msg[1], "\n" )
for p, v := range quotes { // iterate over quotes
// print num of quote, followed by that quote
fmt.Println( p + 1, "\t", v )
}
resp = "te@success" // set transaction end message
case "aa": // /aa/, add answer
// if server says add succeeded
if msg[1] == "success" {
fmt.Println( "Add successful" ) // print success
resp = "te@success" // set transaction end message
// if server says add failed
} else if msg[1] == "error" {
fmt.Println( "Add failed" ) // print fail
resp = "te@error" // set transaction end message
// unknown status message
} else {
// print unknown status
fmt.Println( "Unknown status code: " + msg[1] )
// TODO should this be unknown instead of error?
resp = "te@error" // set transaction end message
}
case "r1": // /r1/, remove ( first transaction )
// the idea is that if the user doesn't specify which quote to
// remove, list all quotes and let the user choose the quote
// to remove. There was probably a way to handle this a little
// more simply, but this, I feel, has some nuance to it that I
// actually like
// redo /la/, list all quotes
// split recv'd message over newline to create quote list
quotes := strings.Split( msg[1], "\n" )
for p, v := range quotes { // iterate over quotes
// print num of quote, followed by that quote
fmt.Println( p + 1, "\t", v )
}
// ask user which quote to remove
resp = "r2@" + in( "\n-> " )
case "r2": // /r2/, remove ( second transaction )
// if server says remove succeeded
if msg[1] == "success" {
fmt.Println( "Remove successful\n" ) // success
// list all quotes to validate remove succeeded
// TODO should /aa/ also make /lr/ before /te/?
resp = "lr@dumvar" // set transaction end message
// if server says remove failed
} else if msg[1] == "error" {
fmt.Println( "Remove failed" ) // print failure
resp = "te@error" // set transaction end message
// if unknown status message
} else {
// print unknown status
fmt.Println( "Unknown error code: " + msg[1] )
// TODO should this be unknown instead of error?
resp = "te@error" // set transaction end message
}
case "br": // /br/, bad request
// client has asked for something nonsensical
// TODO write out to file
fmt.Println( "Client sent a bad request" )
resp = "te@error" // set transaction end message
default: // something undefined entirely
// TODO write out to file
//fmt.Println( "Message header not recognized" )
//fmt.Println( msg )
conn.Close() // TODO how important is this line
return // dead return, essentially lets program quit
}
// send formulated response back to server
_, err = conn.Write( []byte( resp ) )
check( err ) // make sure write worked
handle( conn ) // call handle again
}
// globals
var qsize int // keep track of num of quotes
var conn net.Conn // keep track of connection
// global flag variables
var add bool // add new quotes to quote file ( on server )
var remove bool // remove quotes from quote file ( on server )
var list bool // request entire quote file from server
var dest string // provide a new destination ip and port
func main() {
// define flags
flag.BoolVar( &add, "a", false, "add quote to list" )
flag.BoolVar( &remove, "r", false, "remove quote from list" )
flag.BoolVar( &list, "l", false, "print quote list" )
flag.StringVar( &dest, "ip", ":1300", "ip:port of server" )
flag.Parse() // process flags
service := dest // declare server ip:port
// create address object
addr, err := net.ResolveTCPAddr( "tcp", service )
check( err ) // check for errors
// make connection with object
conn, err = net.DialTCP( "tcp", nil, addr )
check( err ) // check for errors
// block for all flags
var command string
switch { // empty switch statement is basically an if
case list: // if list flag is active
command = "lr@dumvar" // list request
// TODO come up with a useful argument, instead of dumvar
case add: // if add flag is active
// if arguments were specified
if len( flag.Args() ) != 0 {
command = "ar@" // preface command w/ add request
// need to concat flag.args
for _, v := range flag.Args() {
// add the string and a space to command
command = command + v + " "
}
// remove the trailing space
command = command[:len( command ) - 1]
} else { // if no arguments were specified
// print that you need args and bail
fmt.Println( "/a/ flag must be used with an arugment" )
os.Exit( 1 )
}
case remove: // if remove flag is active
// if arguments were specified
if len( flag.Args() ) > 0 {
// argument is supposed to the number of the quote to
// be removed, get first arg
// cast to int just to make sure it's a valid number
// assuming the user knows what they're doing
_, rerr := strconv.Atoi( flag.Args()[0] )
// if there was an error, just pretend there's no args
if rerr != nil {
command = "r1@dumvar" // remove request 1
// TODO come up w/ useful argument, replace dumvar
} else {
// if user knows the number, take care of it
// arg[0] is a string, so concat is cool
// jump right into remove request 2
command = "r2@" + flag.Args()[0]
}
} else { // if no argument was specified for remove
// jump right into remove request 1
command = "r1@dumvar"
}
default: // if no flag was specified
// begin transaction for quote request
command = "sr@please" // size request
}
// write command to server, beginning transaction
_, err = conn.Write( []byte( command ) )
check( err ) // make sure write worked
handle( conn ) // handle response
// TODO stack trace when handle returns, should probably be
// updated
conn.Close() // close connection when finished
os.Exit( 0 ) // exit
}
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// =============================================================================
// Auth: alex
// File: client.go
// Revn: 05-19-2024 0.2
// Func: ask server for a message of the day quote
//
// TODO: gut
// write
// =============================================================================
// CHANGE LOG
// -----------------------------------------------------------------------------
// 05-18-2024: gutted
// 05-19-2024: fixed
// commented
//
// =============================================================================
package main
import (
//"io" // io.EOF
"flag" // BoolVar, StringVar, Parse
"fmt" // Println
"net" // ResolveTCPAddr, DialTCP, conn.Write,Read
"os" // Exit
//"strconv" // Atoi, Itoa
//"strings" // Split
)
/*
// print errors if they occur, quit
func check( err error ) {
var errep string // declare error report string
switch err { // switch case over error input
case nil: // if there was no error
// then there was no error
errep = "err is nil"
case io.EOF: // if there was an End Of File error
errep = "Error: " + err.Error() // document error
conn.Close() // close connection
default: // anything besides those are a big deal
errep = "Fatal: " + err.Error()
}
var critical bool // declare critical error flag
// must be neither nil nor EOF
critical = err != nil && err != io.EOF
if critical { // XXX critical print
// TODO at some point, critical should be logging instead of
// printing, only verbose should print
fmt.Println( "check() -> ", errep )
}
if critical { // if there was a critical error
os.Exit( 1 ) // cut and run
}
}
// get server response and print
func handle( conn net.Conn ) {
var buffer [tsize]byte // create buffer to hold response
// read n bytes from server into buffer ( byte slice )
n, err := conn.Read( buffer[:] )
check( err ) // check for errors
// split recv'd message over @, separate header from message
msg := strings.Split( string( buffer[:n] ), "@" )
var resp string // declare response variable
switch msg[0] { // switch/case over the header
case "la": // /la/, list answer
if len( msg ) > 2 {
resp = "lr@"
} else {
// split recv'd message over newline to create quote list
quotes := strings.Split( msg[1], "\n" )
for p, v := range quotes { // iterate over quotes
// print num of quote, followed by that quote
fmt.Println( p + 1, "\t", v )
}
resp = "te@success"
}
default: // something undefined entirely
// TODO write out to file
//fmt.Println( "Message header not recognized" )
//fmt.Println( msg )
conn.Close() // TODO how important is this line
return // dead return, essentially lets program quit
}
// send formulated response back to server
_, err = conn.Write( []byte( resp ) )
check( err ) // make sure write worked
handle( conn ) // call handle again
}
*/
// quick check for errors
func check( err error ) {
if err != nil { // err should be nil, !nil is bad
// print error and ditch
fmt.Println( "fatal::", err )
os.Exit( 1 )
}
}
// level 4 handle
func handle( conn net.Conn ) {
// create byte array of pre-ordained size
buf := make( []byte, tsize )
// read from connection into byte array
_, err := conn.Read( buf )
check( err ) // routine check for errors
msg := string( buf ) // convert to string
/*
// iterate over message string
for p, c := range msg {
// cast char ( rune ) to string and see if it's the end char
if string( c ) == "|" {
// if end char, print everything BUT char and exit
fmt.Println( msg[:p] )
return
}
}
*/
// iterate over message string
for _, c := range msg {
// cast char ( rune ) to string and see if it's the end char
if string( c ) == "X" {
// if end char, print everything BUT char and exit
fmt.Println( msg )
return
}
}
fmt.Println( msg ) // if char is not found, print entire
handle( conn ) // message and recursively call level4
}
// globals
var tsize int
var dest string // provide a new destination ip and port
func main() {
// define flags
flag.IntVar( &tsize, "s", 10, "tx size" )
flag.StringVar( &dest, "ip", ":1300", "ip:port of server" )
flag.Parse() // process flags
service := dest // declare server ip:port
// create address object
addr, err := net.ResolveTCPAddr( "tcp", service )
check( err ) // check for errors
// make connection with object
conn, err := net.DialTCP( "tcp", nil, addr )
check( err ) // check for errors
//command := "lr@pls"
// write command to server, beginning transaction
//_, err = conn.Write( []byte( command ) )
//check( err ) // make sure write worked
handle( conn ) // handle response
// TODO stack trace when handle returns, should probably be
// updated
conn.Close() // close connection when finished
os.Exit( 0 ) // exit
}
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// =============================================================================
// Auth: Alex Celani
// File: test.go
// Revn: 05-19-2024 0.4
// Func: explore bounding on piecewise file transmission ( PWFT )
//
// TODO: implement
// =============================================================================
// CHANGE LOG
// -----------------------------------------------------------------------------
// 04-19-2024: bones
// level 0 PWFT
// level 1 PWFT
// level 2 PWFT
// 05-13-2024: comment level 1 and level 2 PWFT
// level 3 PWFT
// 05-18-2024: began level 4 changes
// 05-19-2024: got level 4 working
// commented
// wrote level 5
// commented
// wrote level 6!
// commented
//
// =============================================================================
package main
import (
"flag"
"fmt"
"math/rand"
"net" // ResovleTCPAddr, ListenTCP, listener.Accept
// conn.Read,Write
"os" // Exit
"strconv"
)
/*
func makedata() {
for c := 0; c < dsize; c++ {
datum[c] = rand.Intn( dsize )
}
}
*/
// special make function for strings
func makedatatx() {
// classic iteration of length dsize, toss in same-sized array
for c := 0; c < dsize; c++ {
// toss in same size array
// rand int picks letter, 0x61 -> lowercase ascii, cast byte
datumtx[c] = byte( rand.Intn( 26 ) + 0x61 )
}
// cast to string and print ( as slice )
fmt.Println( string( datumtx[:] ) )
}
// handle errors catastrophically
func check( err error ) {
if err != nil { // error is not nil on error
// print error
fmt.Println( "Fatal: ", err.Error() )
os.Exit( 1 ) // bail
}
}
// Levels of PWFT
// 0. print everything indescriminately
// 1. printing piecewise
// 2. printing piecewise with header
// 3. printing piecewise with variable size header
// 4. file tx piecewise
// 5. file tx piecewise with header
// 6. file tx piecewise with variable header
// level 0 PWFT
func level0( data []int) {
fmt.Println( data ) // level 0 sux
}
// level 1 PWFT
func level1() {
tsize := 5 // print 5 chars at a time
txn := dsize / tsize // amount of prints needed
for c := 0; c < txn; c++ { // iterate that amount of times
// print ( using wrapper ) n-1 data points of size tsize
level0( datum[c*tsize:(c+1)*tsize] )
}
level0( datum[txn*tsize:] ) // print nth data point
}
// level 2 PWFT
func level2() {
var bsize int = 10 // total transmission size
var header string = "Lr@x@" // static header
// calculate usable header size
var tsize int = bsize - len( header )
txn := dsize / tsize // amount of prints needed
for c := 0; c < txn; c++ { // iterate that amount of times
fmt.Print( header ) // print static header
// exact same print statement from level 1
level0( datum[c*tsize:(c+1)*tsize] )
}
fmt.Print( header ) // print nth static header
level0( datum[txn*tsize:] ) // print nth data point again
}
// level 3 PWFT
func level3() {
var header string // declare header
var bsize int = 10 // total transmission size
var hhead, htail string = "Lr@", "@" // static pieces of header
txn := 1 // init transmission number
pos := 0 // init position tracker
for { // easier to do an infinite loop and break later
// combine both static parts of the header with the tx number
header = hhead + strconv.Itoa( txn ) + htail
hlen := len( header ) // keep track of total header length
fmt.Print( header ) // print header
// level0 print ( bsize - hlen ) units of data, starting at
// the noted position
level0( datum[ pos:(pos + bsize - hlen) ] )
// update position as last position printed
pos = pos + bsize - hlen
txn++ // update transmission number
// check to see if *updated* position goes out of bounds
if pos + bsize - hlen > dsize {
break // break if'n
}
}
// print nth header ( X denotes final transmission )
fmt.Print( hhead + "X" + htail )
level0( datum[pos:] ) // print from final position to end
}
// level 4 PWFT
func level4( conn net.Conn ) {
txn := dsize / tsize // amount of transmissions
// iterate for number of transmissions
for c := 0; c < txn; c++ {
// write that amount of times, very specific slice
_, err := conn.Write( datumtx[c*tsize:(c+1)*tsize] )
check( err ) // routine error check
}
// write final of last chunk of data
_, err := conn.Write( datumtx[txn * tsize:] )
check( err ) // routine error check
_, err = conn.Write( []byte( "|" ) ) // write end char
check( err ) // routine error check
}
// level 5 PWFT
func level5( conn net.Conn ) {
header := "la@x@" // static header
psize := tsize - len( header ) // calculate payload size
txn := dsize / psize // amount of transmissions
// iterate for number of transmissions
for c := 0; c < txn; c++ {
// concat header with payload, easier as string, cast to byte
packet := header + string( datumtx[c*psize:(c+1)*psize] )
// write that amount of times, very specific slice
_, err := conn.Write( []byte( packet ) )
check( err ) // routine error check
}
// concat last payload
packet := header + string( datumtx[txn*psize:] )
// write final of last chunk of data
_, err := conn.Write( []byte( packet ) )
check( err ) // routine error check
_, err = conn.Write( []byte( "|" ) ) // write end char
check( err ) // routine error check
}
// level 6 PWFT
func level6( conn net.Conn ) {
var header string // declare header
var hhead, htail string = "la@", "@" // static pieces of header
txn := 1 // init transmission number
pos := 0 // init position tracker
for { // easier to do an infinite loop and break later
// combine both static parts of the header with the tx number
header = hhead + strconv.Itoa( txn ) + htail
hlen := len( header ) // keep track of total header length
// craft packet
packet := header + string( datumtx[pos:( pos + tsize - hlen )] )
// cast packet to byte array and send
_, err := conn.Write( []byte( packet ) )
check( err ) // routine error check
// update position as last position printed
pos = pos + tsize - hlen
txn++ // update transmission number
// check to see if *updated* position goes out of bounds
if pos + tsize - hlen > dsize {
break // break if'n
}
}
// print nth header ( X denotes final transmission )
header = hhead + "X" + htail
packet := header + string( datumtx[pos:] )
// cast data to string, concat, cast to byte array, send
_, err := conn.Write( []byte( packet ) )
check( err ) // routine error check
}
// size variables
var dsize int = 104
// data global
var datum = make( []int, dsize )
var datumtx = make( []byte, dsize )
var tsize int
func main() {
flag.IntVar( &tsize, "s", 10, "tx size" )
flag.Parse()
makedatatx() // fill global with data
service := ":1300" // create service on ip and port
// resolve ip address and port
addr, err := net.ResolveTCPAddr( "tcp", service )
check( err ) // make sure ip resolves
// create listener object from ip:port
listener, err := net.ListenTCP( "tcp", addr )
// print global data to show that PWFT works as intended
//level0( datum )
//level3() // do the thing
for {
// wait, create connection when found
conn, err := listener.Accept()
check( err ) // make sure connection works
go level6( conn ) // handle connection
}
}
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// =============================================================================
// Auth: Alex Celani
// File: server.go
// Revn: 10-17-2023 3.0
// Func: host connection, reply to speak.go
//
// TODO: add more /codes/ to handle
// add flags?
// write usage and errors to logfile
// send logfile to client on request
// =============================================================================
// CHANGE LOG
// -----------------------------------------------------------------------------
// 05-13-2022: init
// 08-29-2023: gutted and rewrote
// commented
// 09-12-2023: imported io/ioutil, strings, strconv
// added size conversation
// added file read function, fread()
// commented
// 09-21-2023: began rewrite of handle()
// 09-26-2023: got /list/ command working
// got /add/ command (mostly) working
//*10-02-2023: commented handle()
// added checks to /qr/ and /r2/ to make sure recv'd
// length is valid
// wrote writeFile()
//*10-05-2023: commented
// imported check() to ignore EOF
// fixed bug in /r2/ where removing quote at final
// position would break
// removed deadcode from /r2/, unused "quit" bool?
//*10-17-2023: fixed bug where quotes are read from and saved to two
// different files
// removed implicit newline at end of qfile to stop ghost
// line bug in /la/
// removed dead debug print in fread()
//
// =============================================================================
package main
import (
"fmt" // Println
"io" // io.EOF
"io/ioutil" // ReadFile
"net" // ResovleTCPAddr, ListenTCP, listener.Accept
// conn.Read,Write
"os" // Exit
"strconv" // Itoa
"strings" // Split
)
// handle errors catastrophically
func check( err error ) {
if err != nil { // error is not nil on error
// print error
fmt.Println( "Fatal: ", err.Error() )
os.Exit( 1 ) // bail
}
}
// FIXME clean this two check() shit up
// print errors if they occur, quit
func checkN( err error, conn net.Conn ) {
var errep string // declare error report string
switch err { // switch case over error input
case nil: // if there was no error
// then there was no error
errep = "err is nil"
case io.EOF: // if there was an End Of File error
errep = "Error: " + err.Error() // document error
conn.Close() // close connection
default: // anything besides those are a big deal
errep = "Fatal: " + err.Error()
}
var critical bool // declare critical error flag
// must be neither nil nor EOF
critical = err != nil && err != io.EOF
if critical { // XXX critical print
// TODO at some point, critical should be logging instead of
// printing, only verbose should print
fmt.Println( "check() -> ", errep )
}
if critical { // if there was a critical error
os.Exit( 1 ) // cut and run
}
}
// read file and create quote list
func fread() string {
// open file "quotes", read entire file as bytes into qfile
qfile, err := ioutil.ReadFile( "list.q" )
check( err ) // make sure read works
// there is a trailing newline in the file, not removing it caused
// bugs where a blank item was introduced into qlist and calling
// /la/ would produce a blank line on the client side that didn't
// really exist
qfile = qfile[:len( qfile ) - 1]
// cast bytes to string, split string over newline into array
qlist = strings.Split( string( qfile ), "\n" )
// deal with the trailing
return string( qfile ) // return file as string
}
// write qfile back to file
func writeFile( f string ) {
// open file list.q as variable file
file, err := os.Create( "list.q" )
check( err ) // make sure open worked
// write input string ( quote file ) back to file
_, err = file.WriteString( f )
check( err ) // make sure writeback worked
}
// handle connections ( new and improved )
func handle( conn net.Conn ) {
// create buffer to hold read message
var buffer [256]byte
// read n bytes from client
n, err := conn.Read( buffer[:] )
checkN( err, conn ) // make sure read worked
// cast message to string, take first n bytes, split over @
command := strings.Split( string( buffer[:n] ), "@" )
// declare response string
var resp string
switch command[0] { // switch/case over opcode
case "sr": // /sr/, size request
// get length of list, convert to string
// XXX probably no reason to have this declaration scheme
var num string = strconv.Itoa( len( qlist ) )
// concat and send
resp = "sa@" + num // size answer
case "qr": // /qr/, quote request
// convert message argument to string to make sure it's a
// valid number
num, nerr := strconv.Atoi( command[1] )
// nerr will not be nil if comm[1] is not a number
if nerr != nil {
// formulate an error message
// TODO flesh this out more
resp = "ba@qr@!" // bad answer
} else { // comm[1] was a number, but...
switch { // how do we know it's a valid number
case num > len( qlist ):
// bad answer in quote request
resp = "ba@qr@>"
// why bad? num is >
case num < 0:
// bad answer in quote request
resp = "ba@qr@-"
// why bad? num is -
default:
// good num, get quote, send off
resp = "qa@" + qlist[num] // quote answer
}
}
case "lr": // /lr/, list request
// just concat entire list to send
//resp = "la@" + qfile[:len( qfile ) - 1] // list answer
resp = "la@" + qfile // list answer
// TODO what happens if this is longer than 256 char?
case "ar": // /ar/, add request
// append new quote to list
qlist = append( qlist, command[1] )
// also append new quote to file variable
qfile = qfile + "\n" + command[1]
writeFile( qfile )
resp = "aa@success" // add answer
// TODO write to file
case "r1": // /r1/, remove request 1
// same as list, just send whole file
resp = "r1@" + qfile // remove request 1
case "r2": // /r2/, remove request 2
// convert message argument to string to make sure it's a
// valid number
num, nerr := strconv.Atoi( command[1] )
// nerr will not be nil if comm[1] is not a number
if nerr != nil {
// formulate an error message
// TODO flesh this out more
resp = "ba@r2@!" // bad answer
} else { // comm[1] was a number, but...
num = num - 1
switch { // how do we know it's a valid number
// valid numbers are from 0 - len-1
case num > len( qlist ):
// bad answer in quote request
resp = "ba@r2@>"
// why bad? num is >
case num < 0:
// bad answer in quote request
resp = "ba@r2@-"
// why bad? num is -
// if num is not OUT OF RANGE, must be in range
default:
// replace the quote at that position with
// final quote
qlist[num] = qlist[len( qlist ) - 1]
// remove second copy of quote
qlist = qlist[:len( qlist ) - 1]
// O(1) remove from list at any position
// must entirely recreate quote string
var f string = "" // init empty string
// iterate over list, disregard index
for _, v := range qlist {
// add next quote to file and separate
// quotes with newline
f = f + v + "\n"
}
// remove trailing newline, to prevent ghost
f = f[:len( f ) - 1] // quote in lr
// reassign global string variable to
// recreated quote string
qfile = f
writeFile( qfile ) // write back to file
// let client know remove was successful
resp = "r2@success"
}
}
case "te": // /te/, transaction end
// TODO should I be sending something?
// TODO is it better to close now or outside of handle()
conn.Close() // close connection and leave
return // return from handle(), finish connection
default: // opcode not recognized
// TODO there should be more being down, here, right?
return // return from handle(), finish connection
}
// write response to client
_, err = conn.Write( []byte( resp ) )
checkN( err, conn ) // make sure write worked
handle( conn ) // call handle() again to get response from client
}
// globals
var qlist []string // list of quotes
var qfile string // file object
// main, create port and wait for connection
func main() {
qfile = fread() // read quote file, init ( global ) list of quotes
service := ":1300" // create service on ip and port
// resolve ip address and port
addr, err := net.ResolveTCPAddr( "tcp", service )
check( err ) // make sure ip resolves
// create listener object from ip:port
listener, err := net.ListenTCP( "tcp", addr )
for {
// wait, create connection when found
conn, err := listener.Accept()
check( err ) // make sure connection works
go handle( conn ) // handle connection
}
os.Exit( 0 ) // exeunt
}