test_helper.tcl 14.9 KB
Newer Older
1 2 3 4
# Redis test suite. Copyright (C) 2009 Salvatore Sanfilippo antirez@gmail.com
# This softare is released under the BSD License. See the COPYING file for
# more information.

J
Johan Bergström 已提交
5 6
package require Tcl 8.5

7
set tcl_precision 17
8 9 10 11 12
source tests/support/redis.tcl
source tests/support/server.tcl
source tests/support/tmpfile.tcl
source tests/support/test.tcl
source tests/support/util.tcl
13

14 15 16 17 18 19 20 21 22 23 24 25
#    integration/replication
#    integration/replication-2
#    integration/replication-3
#    integration/replication-4
#    integration/aof
#    integration/rdb

#    unit/multi

#    unit/aofrw


26 27 28 29 30 31
set ::all_tests {
    unit/printver
    unit/auth
    unit/protocol
    unit/basic
    unit/type/list
A
antirez 已提交
32
    unit/type/list-2
33
    unit/type/list-3
34 35 36 37 38 39 40
    unit/type/set
    unit/type/zset
    unit/type/hash
    unit/sort
    unit/expire
    unit/other
    unit/quit
41
    integration/convert-zipmap-hash-on-load
42 43
    unit/pubsub
    unit/slowlog
A
antirez 已提交
44
    unit/scripting
A
antirez 已提交
45
    unit/maxmemory
46
    unit/introspection
A
antirez 已提交
47
    unit/limits
48
    unit/obuf-limits
A
antirez 已提交
49
    unit/dump
A
antirez 已提交
50
    unit/bitops
51 52 53 54
}
# Index to the next test to run in the ::all_tests list.
set ::next_test 0

55
set ::host 127.0.0.1
56
set ::port 21111
57
set ::traceleaks 0
58
set ::valgrind 0
A
antirez 已提交
59
set ::verbose 0
60
set ::quiet 0
P
Pieter Noordhuis 已提交
61 62
set ::denytags {}
set ::allowtags {}
63
set ::external 0; # If "1" this means, we are running against external instance
64
set ::file ""; # If set, runs only the tests in this comma separated list
65
set ::curfile ""; # Hold the filename of the current suite
66
set ::accurate 0; # If true runs fuzz tests with more iterations
67
set ::force_failure 0
68 69 70 71 72 73 74 75

# Set to 1 when we are running in client mode. The Redis test uses a
# server-client model to run tests simultaneously. The server instance
# runs the specified number of client instances that will actually run tests.
# The server is responsible of showing the result to the user, and exit with
# the appropriate exit code depending on the test outcome.
set ::client 0
set ::numclients 16
76 77

proc execute_tests name {
78 79 80
    set path "tests/$name.tcl"
    set ::curfile $path
    source $path
81
    send_data_packet $::test_server_fd done "$name"
82 83
}

84 85 86 87
# Setup a list to hold a stack of server configs. When calls to start_server
# are nested, use "srv 0 pid" to get the pid of the inner server. To access
# outer servers, use "srv -1 pid" etcetera.
set ::servers {}
88 89 90 91 92 93 94 95
proc srv {args} {
    set level 0
    if {[string is integer [lindex $args 0]]} {
        set level [lindex $args 0]
        set property [lindex $args 1]
    } else {
        set property [lindex $args 0]
    }
96 97 98 99 100 101 102
    set srv [lindex $::servers end+$level]
    dict get $srv $property
}

# Provide easy access to the client for the inner server. It's possible to
# prepend the argument list with a negative level to access clients for
# servers running in outer blocks.
103
proc r {args} {
104 105 106 107 108 109 110 111
    set level 0
    if {[string is integer [lindex $args 0]]} {
        set level [lindex $args 0]
        set args [lrange $args 1 end]
    }
    [srv $level "client"] {*}$args
}

P
Pieter Noordhuis 已提交
112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130
proc reconnect {args} {
    set level [lindex $args 0]
    if {[string length $level] == 0 || ![string is integer $level]} {
        set level 0
    }

    set srv [lindex $::servers end+$level]
    set host [dict get $srv "host"]
    set port [dict get $srv "port"]
    set config [dict get $srv "config"]
    set client [redis $host $port]
    dict set srv "client" $client

    # select the right db when we don't have to authenticate
    if {![dict exists $config "requirepass"]} {
        $client select 9
    }

    # re-set $srv in the servers list
131
    lset ::servers end+$level $srv
P
Pieter Noordhuis 已提交
132 133
}

134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149
proc redis_deferring_client {args} {
    set level 0
    if {[llength $args] > 0 && [string is integer [lindex $args 0]]} {
        set level [lindex $args 0]
        set args [lrange $args 1 end]
    }

    # create client that defers reading reply
    set client [redis [srv $level "host"] [srv $level "port"] 1]

    # select the right db and read the response (OK)
    $client select 9
    $client read
    return $client
}

150 151 152 153 154 155 156 157
# Provide easy access to INFO properties. Same semantic as "proc r".
proc s {args} {
    set level 0
    if {[string is integer [lindex $args 0]]} {
        set level [lindex $args 0]
        set args [lrange $args 1 end]
    }
    status [srv $level "client"] [lindex $args 0]
158 159
}

160
proc cleanup {} {
161
    if {!$::quiet} {puts -nonewline "Cleanup: may take some time... "}
162
    flush stdout
163 164
    catch {exec rm -rf {*}[glob tests/tmp/redis.conf.*]}
    catch {exec rm -rf {*}[glob tests/tmp/server.*]}
165
    if {!$::quiet} {puts "OK"}
166 167
}

168 169 170
proc find_available_port start {
    for {set j $start} {$j < $start+1024} {incr j} {
        if {[catch {
A
antirez 已提交
171
            set fd [socket 127.0.0.1 $j]
172
        }]} {
A
antirez 已提交
173
            return $j
174 175 176 177 178 179 180 181 182
        } else {
            close $fd
        }
    }
    if {$j == $start+1024} {
        error "Can't find a non busy port in the $start-[expr {$start+1023}] range."
    }
}

183
proc test_server_main {} {
184
    cleanup
185
    set tclsh [info nameofexecutable]
186 187
    # Open a listening socket, trying different ports in order to find a
    # non busy one.
188
    set port [find_available_port 11111]
189 190 191
    if {!$::quiet} {
        puts "Starting test server at port $port"
    }
192
    socket -server accept_test_clients $port
A
antirez 已提交
193

194
    # Start the client instances
195
    set ::clients_pids {}
196
    set start_port [expr {$::port+100}]
197
    for {set j 0} {$j < $::numclients} {incr j} {
198
        set start_port [find_available_port $start_port]
199
        set p [exec $tclsh [info script] {*}$::argv \
200
            --client $port --port $start_port &]
201
        lappend ::clients_pids $p
202
        incr start_port 10
203
    }
204

205 206 207
    # Setup global state for the test server
    set ::idle_clients {}
    set ::active_clients {}
208 209
    array set ::clients_start_time {}
    set ::clients_time_history {}
210
    set ::failed_tests {}
211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244

    # Enter the event loop to handle clients I/O
    after 100 test_server_cron
    vwait forever
}

# This function gets called 10 times per second, for now does nothing but
# may be used in the future in order to detect test clients taking too much
# time to execute the task.
proc test_server_cron {} {
}

proc accept_test_clients {fd addr port} {
    fileevent $fd readable [list read_from_test_client $fd]
}

# This is the readable handler of our test server. Clients send us messages
# in the form of a status code such and additional data. Supported
# status types are:
#
# ready: the client is ready to execute the command. Only sent at client
#        startup. The server will queue the client FD in the list of idle
#        clients.
# testing: just used to signal that a given test started.
# ok: a test was executed with success.
# err: a test was executed with an error.
# exception: there was a runtime exception while executing the test.
# done: all the specified test file was processed, this test client is
#       ready to accept a new task.
proc read_from_test_client fd {
    set bytes [gets $fd]
    set payload [read $fd $bytes]
    foreach {status data} $payload break
    if {$status eq {ready}} {
245 246 247
        if {!$::quiet} {
            puts "\[$status\]: $data"
        }
248 249
        signal_idle_client $fd
    } elseif {$status eq {done}} {
250
        set elapsed [expr {[clock seconds]-$::clients_start_time($fd)}]
251 252 253 254
        set all_tests_count [llength $::all_tests]
        set running_tests_count [expr {[llength $::active_clients]-1}]
        set completed_tests_count [expr {$::next_test-$running_tests_count}]
        puts "\[$completed_tests_count/$all_tests_count [colorstr yellow $status]\]: $data ($elapsed seconds)"
255
        lappend ::clients_time_history $elapsed $data
256
        signal_idle_client $fd
A
antirez 已提交
257
    } elseif {$status eq {ok}} {
258 259 260
        if {!$::quiet} {
            puts "\[[colorstr green $status]\]: $data"
        }
A
antirez 已提交
261
    } elseif {$status eq {err}} {
262 263 264
        set err "\[[colorstr red $status]\]: $data"
        puts $err
        lappend ::failed_tests $err
265 266 267 268
    } elseif {$status eq {exception}} {
        puts "\[[colorstr red $status]\]: $data"
        foreach p $::clients_pids {
            catch {exec kill -9 $p}
269
        }
270
        exit 1
271 272
    } elseif {$status eq {testing}} {
        # No op
273
    } else {
274 275 276
        if {!$::quiet} {
            puts "\[$status\]: $data"
        }
277
    }
278
}
279

280 281 282 283 284 285 286 287
# A new client is idle. Remove it from the list of active clients and
# if there are still test units to run, launch them.
proc signal_idle_client fd {
    # Remove this fd from the list of active clients.
    set ::active_clients \
        [lsearch -all -inline -not -exact $::active_clients $fd]
    # New unit to process?
    if {$::next_test != [llength $::all_tests]} {
288 289 290
        if {!$::quiet} {
            puts [colorstr bold-white "Testing [lindex $::all_tests $::next_test]"]
        }
291
        set ::clients_start_time($fd) [clock seconds]
292 293 294
        send_data_packet $fd run [lindex $::all_tests $::next_test]
        lappend ::active_clients $fd
        incr ::next_test
295
    } else {
296 297 298
        lappend ::idle_clients $fd
        if {[llength $::active_clients] == 0} {
            the_end
299
        }
300
    }
301
}
302

303 304 305 306
# The the_end funciton gets called when all the test units were already
# executed, so the test finished.
proc the_end {} {
    # TODO: print the status, exit with the rigth exit code.
307
    puts "\n                   The End\n"
308 309 310 311
    puts "Execution time of different units:"
    foreach {time name} $::clients_time_history {
        puts "  $time seconds - $name"
    }
312
    if {[llength $::failed_tests]} {
A
antirez 已提交
313
        puts "\n[colorstr bold-red {!!! WARNING}] The following tests failed:\n"
314 315 316
        foreach failed $::failed_tests {
            puts "*** $failed"
        }
A
antirez 已提交
317
        cleanup
318
        exit 1
319 320
    } else {
        puts "\n[colorstr bold-white {\o/}] [colorstr bold-green {All tests passed without errors!}]\n"
A
antirez 已提交
321
        cleanup
322
        exit 0
323 324 325
    }
}

326 327 328 329 330 331 332 333 334 335 336 337 338
# The client is not even driven (the test server is instead) as we just need
# to read the command, execute, reply... all this in a loop.
proc test_client_main server_port {
    set ::test_server_fd [socket localhost $server_port]
    send_data_packet $::test_server_fd ready [pid]
    while 1 {
        set bytes [gets $::test_server_fd]
        set payload [read $::test_server_fd $bytes]
        foreach {cmd data} $payload break
        if {$cmd eq {run}} {
            execute_tests $data
        } else {
            error "Unknown test client command: $cmd"
339
        }
340
    }
341
}
A
antirez 已提交
342

343 344 345 346 347
proc send_data_packet {fd status data} {
    set payload [list $status $data]
    puts $fd [string length $payload]
    puts -nonewline $fd $payload
    flush $fd
348 349
}

A
antirez 已提交
350 351 352 353
proc print_help_screen {} {
    puts [join {
        "--valgrind         Run the test over valgrind."
        "--accurate         Run slow randomized tests for more iterations."
354
        "--quiet            Don't show individual tests."
A
antirez 已提交
355 356
        "--single <unit>    Just execute the specified unit (see next option)."
        "--list-tests       List all the available test units."
357
        "--clients <num>    Number of test clients (16)."
A
antirez 已提交
358 359 360 361 362
        "--force-failure    Force the execution of a test that always fails."
        "--help             Print this help screen."
    } "\n"]
}

363 364 365 366 367 368 369 370 371 372 373 374 375
# parse arguments
for {set j 0} {$j < [llength $argv]} {incr j} {
    set opt [lindex $argv $j]
    set arg [lindex $argv [expr $j+1]]
    if {$opt eq {--tags}} {
        foreach tag $arg {
            if {[string index $tag 0] eq "-"} {
                lappend ::denytags [string range $tag 1 end]
            } else {
                lappend ::allowtags $tag
            }
        }
        incr j
376 377
    } elseif {$opt eq {--valgrind}} {
        set ::valgrind 1
378 379
    } elseif {$opt eq {--quiet}} {
        set ::quiet 1
380 381 382 383 384 385 386
    } elseif {$opt eq {--host}} {
        set ::external 1
        set ::host $arg
        incr j
    } elseif {$opt eq {--port}} {
        set ::port $arg
        incr j
387 388
    } elseif {$opt eq {--accurate}} {
        set ::accurate 1
389 390
    } elseif {$opt eq {--force-failure}} {
        set ::force_failure 1
391 392 393 394 395 396 397 398
    } elseif {$opt eq {--single}} {
        set ::all_tests $arg
        incr j
    } elseif {$opt eq {--list-tests}} {
        foreach t $::all_tests {
            puts $t
        }
        exit 0
399 400 401 402
    } elseif {$opt eq {--client}} {
        set ::client 1
        set ::test_server_port $arg
        incr j
403 404 405
    } elseif {$opt eq {--clients}} {
        set ::numclients $arg
        incr j
406
    } elseif {$opt eq {--help}} {
A
antirez 已提交
407
        print_help_screen
408
        exit 0
409 410 411 412 413 414
    } else {
        puts "Wrong argument: $opt"
        exit 1
    }
}

415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444
proc attach_to_replication_stream {} {
    set s [socket [srv 0 "host"] [srv 0 "port"]]
    fconfigure $s -translation binary
    puts -nonewline $s "SYNC\r\n"
    flush $s

    # Get the count
    set count [gets $s]
    set prefix [string range $count 0 0]
    if {$prefix ne {$}} {
        error "attach_to_replication_stream error. Received '$count' as count."
    }
    set count [string range $count 1 end]

    # Consume the bulk payload
    while {$count} {
        set buf [read $s $count]
        set count [expr {$count-[string length $buf]}]
    }
    return $s
}

proc read_from_replication_stream {s} {
    fconfigure $s -blocking 0
    set attempt 0
    while {[gets $s count] == -1} {
        if {[incr attempt] == 10} return ""
        after 100
    }
    fconfigure $s -blocking 1
445 446 447 448 449 450

    # Workaround for Redis 2.6, not always using the new protocol in the
    # replication channel (this was fixed in >= 2.8).
    if {[string tolower [lindex [split $count] 0]] eq {select}} {
        return $count
    }
451 452

    # Return a list of arguments for the command.
453
    set count [string range $count 1 end]
454 455 456 457 458 459 460 461 462 463 464 465 466 467 468 469 470 471 472 473
    set res {}
    for {set j 0} {$j < $count} {incr j} {
        read $s 1
        set arg [::redis::redis_bulk_read $s]
        if {$j == 0} {set arg [string tolower $arg]}
        lappend res $arg
    }
    return $res
}

proc assert_replication_stream {s patterns} {
    for {set j 0} {$j < [llength $patterns]} {incr j} {
        assert_match [lindex $patterns $j] [read_from_replication_stream $s]
    }
}

proc close_replication_stream {s} {
    close $s
}

474 475 476 477 478 479 480 481 482 483 484 485
# With the parallel test running multiple Redis instances at the same time
# we need a fast enough computer, otherwise a lot of tests may generate
# false positives.
# If the computer is too slow we revert the sequetial test without any
# parallelism, that is, clients == 1.
proc is_a_slow_computer {} {
    set start [clock milliseconds]
    for {set j 0} {$j < 1000000} {incr j} {}
    set elapsed [expr [clock milliseconds]-$start]
    expr {$elapsed > 200}
}

486 487 488 489 490
if {$::client} {
    if {[catch { test_client_main $::test_server_port } err]} {
        set estr "Executing test client: $err.\n$::errorInfo"
        if {[catch {send_data_packet $::test_server_fd exception $estr}]} {
            puts $estr
491 492 493
        }
        exit 1
    }
494
} else {
495 496 497 498 499
    if {[is_a_slow_computer]} {
        puts "** SLOW COMPUTER ** Using a single client to avoid false positives."
        set ::numclients 1
    }

500 501 502 503 504 505 506 507 508
    if {[catch { test_server_main } err]} {
        if {[string length $err] > 0} {
            # only display error when not generated by the test suite
            if {$err ne "exception"} {
                puts $::errorInfo
            }
            exit 1
        }
    }
509
}