tests: cleanup compiler_errors_test.v using language features (chan), instead of raw `sync.new_channel` and `unsafe { ch.push }` calls
parent
9de0c725f6
commit
2cc3b74e19
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@ -4,7 +4,6 @@ import term
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import v.util.diff
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import v.util.vtest
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import time
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import sync
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import runtime
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import benchmark
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@ -16,8 +15,12 @@ const skip_on_ubuntu_musl = [
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'vlib/v/checker/tests/vweb_tmpl_used_var.vv',
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]
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const vexe = os.getenv('VEXE')
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const turn_off_vcolors = os.setenv('VCOLORS', 'never', true)
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const show_cmd = os.getenv('VTEST_SHOW_CMD') != ''
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// This is needed, because some of the .vv files are tests, and we do need stable
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// output from them, that can be compared against their .out files:
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const turn_on_normal_test_runner = os.setenv('VTEST_RUNNER', 'normal', true)
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@ -26,6 +29,8 @@ const should_autofix = os.getenv('VAUTOFIX') != ''
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const github_job = os.getenv('GITHUB_JOB')
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const v_ci_ubuntu_musl = os.getenv('V_CI_UBUNTU_MUSL').len > 0
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struct TaskDescription {
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vexe string
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evars string
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@ -54,7 +59,6 @@ mut:
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}
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fn test_all() {
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vexe := os.getenv('VEXE')
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vroot := os.dir(vexe)
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os.chdir(vroot) or {}
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checker_dir := 'vlib/v/checker/tests'
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@ -162,15 +166,11 @@ fn (mut tasks Tasks) add(custom_vexe string, dir string, voptions string, result
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}
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fn (mut tasks Tasks) add_evars(evars string, custom_vexe string, dir string, voptions string, result_extension string, tests []string, is_module bool) {
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mut vexe := tasks.vexe
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if custom_vexe != '' {
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vexe = custom_vexe
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}
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paths := vtest.filter_vtest_only(tests, basepath: dir)
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for path in paths {
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tasks.all << TaskDescription{
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evars: evars
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vexe: vexe
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vexe: if custom_vexe != '' { custom_vexe } else { tasks.vexe }
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dir: dir
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voptions: voptions
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result_extension: result_extension
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@ -186,14 +186,17 @@ fn bstep_message(mut bench benchmark.Benchmark, label string, msg string, sdurat
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// process an array of tasks in parallel, using no more than vjobs worker threads
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fn (mut tasks Tasks) run() {
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tasks.show_cmd = os.getenv('VTEST_SHOW_CMD') != ''
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if tasks.all.len == 0 {
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return
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}
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tasks.show_cmd = show_cmd
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vjobs := if tasks.parallel_jobs > 0 { tasks.parallel_jobs } else { runtime.nr_jobs() }
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mut bench := benchmark.new_benchmark()
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bench.set_total_expected_steps(tasks.all.len)
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mut work := sync.new_channel<TaskDescription>(u32(tasks.all.len))
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mut results := sync.new_channel<TaskDescription>(u32(tasks.all.len))
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mut work := chan TaskDescription{cap: tasks.all.len}
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mut results := chan TaskDescription{cap: tasks.all.len}
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mut m_skip_files := skip_files.clone()
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if os.getenv('V_CI_UBUNTU_MUSL').len > 0 {
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if v_ci_ubuntu_musl {
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m_skip_files << skip_on_ubuntu_musl
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}
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$if noskip ? {
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@ -220,11 +223,11 @@ fn (mut tasks Tasks) run() {
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if tasks.all[i].path in m_skip_files {
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tasks.all[i].is_skipped = true
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}
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unsafe { work.push(&tasks.all[i]) }
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work <- tasks.all[i]
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}
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work.close()
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for _ in 0 .. vjobs {
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go work_processor(mut work, mut results)
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go work_processor(work, results)
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}
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if github_job == '' {
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println('')
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@ -233,7 +236,7 @@ fn (mut tasks Tasks) run() {
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mut total_errors := 0
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for _ in 0 .. tasks.all.len {
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mut task := TaskDescription{}
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results.pop(&task)
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task = <-results
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bench.step()
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if task.is_skipped {
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bench.skip()
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@ -285,16 +288,13 @@ fn (mut tasks Tasks) run() {
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// a single worker thread spends its time getting work from the `work` channel,
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// processing the task, and then putting the task in the `results` channel
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fn work_processor(mut work sync.Channel, mut results sync.Channel) {
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fn work_processor(work chan TaskDescription, results chan TaskDescription) {
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for {
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mut task := TaskDescription{}
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if !work.pop(&task) {
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break
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}
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mut task := <-work or { break }
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sw := time.new_stopwatch()
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task.execute()
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task.took = sw.elapsed()
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results.push(&task)
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results <- task
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}
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}
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@ -0,0 +1,15 @@
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> main start
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> work started
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> main ch.close called
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> work x: 0
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> work x: 1
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> work x: 2
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> work x: 3
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> work x: 4
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> work x: 5
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> work x: 6
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> work x: 7
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> work x: 8
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> work x: 9
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> work ended
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> main task was finished
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@ -0,0 +1,29 @@
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import time
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fn work(input chan u32, started chan bool) {
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println('> work started')
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started <- true
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for {
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x := <-input or { break }
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println('> work x: $x')
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time.sleep(50 * time.millisecond)
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}
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println('> work ended')
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}
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fn main() {
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println('> main start')
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ch := chan u32{cap: 100}
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work_started := chan bool{}
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for x in 0 .. 10 {
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ch <- x
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}
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task := go work(ch, work_started)
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_ := <-work_started
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ch.close()
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println('> main ch.close called')
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task.wait()
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println('> main task was finished')
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}
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