forked from vieter-v/vieter
Initial part of repos API (SEGFAULTS) [CI SKIP]
parent
92ad0c51eb
commit
e13252d368
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@ -18,3 +18,6 @@ test/
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# V compiler directory
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v/
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# gdb log file
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gdb.txt
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13
Makefile
13
Makefile
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@ -16,7 +16,17 @@ vieter: $(SOURCES)
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.PHONY: debug
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debug: dvieter
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dvieter: $(SOURCES)
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$(V) -keepc -cg -cc gcc -o dvieter $(SRC_DIR)
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$(V_PATH) -showcc -keepc -cg -o dvieter $(SRC_DIR)
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.PHONY: gdb
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gdb: dvieter
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VIETER_API_KEY=test \
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VIETER_DOWNLOAD_DIR=data/downloads \
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VIETER_REPO_DIR=data/repo \
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VIETER_PKG_DIR=data/pkgs \
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VIETER_LOG_LEVEL=DEBUG \
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VIETER_REPOS_FILE=data/repos.json \
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gdb --args ./dvieter
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# Optimised production build
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.PHONY: prod
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@ -39,6 +49,7 @@ run: vieter
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VIETER_REPO_DIR=data/repo \
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VIETER_PKG_DIR=data/pkgs \
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VIETER_LOG_LEVEL=DEBUG \
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VIETER_REPOS_FILE=data/repos.json \
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./vieter server
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.PHONY: run-prod
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@ -6,7 +6,7 @@ import rand
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import time
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import os
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import json
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import git
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import server
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import env
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const container_build_dir = '/build'
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@ -17,7 +17,7 @@ fn build() ? {
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// Read in the repos from a json file
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filename := os.join_path_single(conf.repo_dir, 'repos.json')
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txt := os.read_file(filename) ?
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repos := json.decode([]git.GitRepo, txt) ?
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repos := json.decode([]server.GitRepo, txt) ?
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mut commands := [
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// Update repos & install required packages
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@ -17,6 +17,7 @@ pub:
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download_dir string
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api_key string
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repo_dir string
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repos_file string
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}
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pub struct BuildConfig {
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@ -42,7 +43,10 @@ fn get_env_var(field_name string) ?string {
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return error('Only one of $env_var_name or $env_file_name can be defined.')
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}
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// If it's the env var itself, we return it
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// If it's the env var itself, we return it.
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// I'm pretty sure this also prevents variable ending in _FILE (e.g.
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// VIETER_LOG_FILE) from being mistakingely read as an _FILE suffixed env
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// var.
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if env_var != '' {
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return env_var
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}
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@ -1,7 +0,0 @@
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module git
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pub struct GitRepo {
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pub:
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url string [required]
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branch string [required]
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}
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@ -2,17 +2,12 @@ module repo
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import os
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import package
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// Dummy struct to work around the fact that you can only share structs, maps &
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// arrays
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pub struct Dummy {
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x int
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}
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import util
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// This struct manages a single repository.
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pub struct Repo {
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mut:
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mutex shared Dummy
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mutex shared util.Dummy
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pub:
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// Where to store repository files
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repo_dir string [required]
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@ -0,0 +1,100 @@
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module server
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import web
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import os
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import json
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const repos_file = 'repos.json'
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pub struct GitRepo {
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pub:
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url string [required]
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branch string [required]
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}
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fn read_repos(path string) ?[]GitRepo {
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if !os.exists(path) {
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mut f := os.create(path) ?
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defer {
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f.close()
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}
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f.write_string('{}') ?
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return []
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}
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content := os.read_file(path) ?
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return json.decode([]GitRepo, content)
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}
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fn write_repos(path string, repos []GitRepo) ? {
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mut f := os.create(path) ?
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defer {
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f.close()
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}
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dump(repos)
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value := json.encode(repos)
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f.write_string(value) ?
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}
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['/api/repos'; get]
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pub fn (mut app App) get_repos() web.Result {
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if !app.is_authorized() {
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return app.text('Unauthorized.')
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}
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repos := rlock app.git_mutex {
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read_repos(app.conf.repos_file) or {
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app.lerror('Failed to read repos file.')
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return app.server_error(500)
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}
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}
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return app.json(repos)
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}
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['/api/repos'; post]
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pub fn (mut app App) post_repo() web.Result {
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if !app.is_authorized() {
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return app.text('Unauthorized.')
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}
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if !('url' in app.query && 'branch' in app.query) {
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return app.server_error(400)
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}
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new_repo := GitRepo{
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url: app.query['url']
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branch: app.query['branch']
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}
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mut repos := rlock app.git_mutex {
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read_repos(app.conf.repos_file) or {
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app.lerror('Failed to read repos file.')
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return app.server_error(500)
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}
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}
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// We need to check for duplicates
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for r in repos {
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if r == new_repo {
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return app.text('Duplicate repository.')
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}
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}
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repos << new_repo
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lock app.git_mutex {
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write_repos(app.conf.repos_file, repos) or {
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return app.server_error(500)
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}
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}
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return app.ok('Repo added successfully.')
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}
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@ -7,25 +7,6 @@ import time
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import rand
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import util
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const prefixes = ['B', 'KB', 'MB', 'GB']
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// pretty_bytes converts a byte count to human-readable version
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fn pretty_bytes(bytes int) string {
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mut i := 0
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mut n := f32(bytes)
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for n >= 1024 {
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i++
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n /= 1024
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}
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return '${n:.2}${server.prefixes[i]}'
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}
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fn is_pkg_name(s string) bool {
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return s.contains('.pkg')
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}
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// healthcheck just returns a string, but can be used to quickly check if the
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// server is still responsive.
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['/health'; get]
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@ -65,7 +46,7 @@ fn (mut app App) put_package() web.Result {
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pkg_path = os.join_path_single(app.conf.download_dir, rand.uuid_v4())
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}
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app.ldebug("Uploading $length bytes (${pretty_bytes(length.int())}) to '$pkg_path'.")
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app.ldebug("Uploading $length bytes (${util.pretty_bytes(length.int())}) to '$pkg_path'.")
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// This is used to time how long it takes to upload a file
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mut sw := time.new_stopwatch(time.StopWatchOptions{ auto_start: true })
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@ -12,9 +12,11 @@ const port = 8000
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struct App {
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web.Context
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pub:
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conf env.ServerConfig [required: web_global]
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conf env.ServerConfig [required; web_global]
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pub mut:
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repo repo.Repo [required; web_global]
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// This is used to claim the file lock on the repos file
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git_mutex shared util.Dummy
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}
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pub fn server() ? {
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22
src/util.v
22
src/util.v
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const reader_buf_size = 1_000_000
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const prefixes = ['B', 'KB', 'MB', 'GB']
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// Dummy struct to work around the fact that you can only share structs, maps &
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// arrays
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pub struct Dummy {
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x int
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}
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[noreturn]
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pub fn exit_with_message(code int, msg string) {
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eprintln(msg)
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@ -67,3 +75,17 @@ pub fn hash_file(path &string) ?(string, string) {
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return md5sum.checksum().hex(), sha256sum.checksum().hex()
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}
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// pretty_bytes converts a byte count to human-readable version
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pub fn pretty_bytes(bytes int) string {
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mut i := 0
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mut n := f32(bytes)
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for n >= 1024 {
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i++
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n /= 1024
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}
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return '${n:.2}${util.prefixes[i]}'
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}
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