initial commit
This commit is contained in:
3
.dockerignore
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3
.dockerignore
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.env
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db.sqlite
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.git
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3
.gitignore
vendored
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3
.gitignore
vendored
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target
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.env
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db.sqlite
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1353
Cargo.lock
generated
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1353
Cargo.lock
generated
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File diff suppressed because it is too large
Load Diff
10
Cargo.toml
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10
Cargo.toml
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[package]
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name = "minibookfluxmark"
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version = "0.1.0"
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edition = "2024"
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[dependencies]
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poem = "3.1.12"
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poem-openapi = { version = "5.1.16", features = ["swagger-ui"] }
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rusqlite = "0.37.0"
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tokio = { version = "1.47.1", features = ["macros", "rt-multi-thread"] }
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74
Dockerfile
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74
Dockerfile
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# syntax=docker/dockerfile:1
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# Comments are provided throughout this file to help you get started.
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# If you need more help, visit the Dockerfile reference guide at
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# https://docs.docker.com/engine/reference/builder/
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################################################################################
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# Create a stage for building the application.
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ARG RUST_VERSION=1.89.0
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FROM rust:${RUST_VERSION}-slim-bullseye AS build
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ARG TARGET=release
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ARG APP_NAME
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WORKDIR /app
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RUN apt update && apt install -y pkg-config libssl-dev libsqlite3-dev
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# Build the application.
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# Leverage a cache mount to /usr/local/cargo/registry/
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# for downloaded dependencies and a cache mount to /app/target/ for
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# compiled dependencies which will speed up subsequent builds.
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# Leverage a bind mount to the src directory to avoid having to copy the
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# source code into the container. Once built, copy the executable to an
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# output directory before the cache mounted /app/target is unmounted.
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RUN --mount=type=bind,source=src,target=src \
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--mount=type=bind,source=Cargo.toml,target=Cargo.toml \
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--mount=type=bind,source=Cargo.lock,target=Cargo.lock \
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--mount=type=cache,target=/app/target/ \
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--mount=type=cache,target=/usr/local/cargo/registry/ \
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<<EOF
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set -e
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echo TARGET=$TARGET
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echo APP_NAME=$APP_NAME
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[ "$TARGET" = "release" ] && cargo build --locked --release || cargo build --locked
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cp ./target/$TARGET/$APP_NAME /bin/server
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EOF
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################################################################################
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# Create a new stage for running the application that contains the minimal
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# runtime dependencies for the application. This often uses a different base
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# image from the build stage where the necessary files are copied from the build
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# stage.
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#
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# The example below uses the debian bullseye image as the foundation for running the app.
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# By specifying the "bullseye-slim" tag, it will also use whatever happens to be the
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# most recent version of that tag when you build your Dockerfile. If
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# reproducability is important, consider using a digest
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# (e.g., debian@sha256:ac707220fbd7b67fc19b112cee8170b41a9e97f703f588b2cdbbcdcecdd8af57).
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FROM debian:bullseye-slim AS final
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RUN apt update && apt install -y libssl-dev openssl ca-certificates curl libsqlite3-dev
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# Create a non-privileged user that the app will run under.
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# See https://docs.docker.com/develop/develop-images/dockerfile_best-practices/ #user
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ARG UID=10001
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RUN adduser \
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--disabled-password \
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--gecos "" \
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--home "/nonexistent" \
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--shell "/sbin/nologin" \
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--no-create-home \
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--uid "${UID}" \
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appuser
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USER appuser
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# Copy the executable from the "build" stage.
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COPY --from=build /bin/server /bin/
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# Expose the port that the application listens on.
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EXPOSE 3000
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# What the container should run when it is started.
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CMD ["/bin/server"]
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14
compose.yaml
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14
compose.yaml
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services:
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site:
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build:
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context: .
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target: final
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args:
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APP_NAME: minibookfluxmark
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ports:
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- 3937:3000
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env_file: ".env"
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environment:
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MINIBOOKFLUXMARK_DB_PATH: /db.sqlite
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volumes:
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- ./db.sqlite:/db.sqlite
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184
src/main.rs
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src/main.rs
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use std::{env, error::Error};
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use poem::{Route, Server, listener::TcpListener};
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use poem_openapi::{
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ApiResponse, Object, OpenApi, OpenApiService, SecurityScheme, auth::Bearer, payload::Json,
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payload::PlainText,
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};
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use tokio::task::spawn_blocking;
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struct Bookmark {
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id: i32,
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title: String,
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url: String,
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description: String,
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}
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#[derive(SecurityScheme)]
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#[oai(ty = "bearer", key_name = "X-Minibookfluxmark-Auth", key_in = "header")]
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struct BearerAuth(Bearer);
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impl BearerAuth {
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fn check(&self) -> bool {
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self.0.token == std::env::var("MINIBOOKFLUXMARK_ACCESS_TOKEN").unwrap()
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}
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}
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#[derive(Object, Clone)]
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struct BookmarkRequest {
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title: String,
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url: String,
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description: String,
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}
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#[derive(ApiResponse)]
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enum AddBookmarkResponse {
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#[oai(status = 200)]
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Ok,
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#[oai(status = 403)]
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NotAuthorized,
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#[oai(status = 500)]
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ServerError,
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}
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#[derive(ApiResponse)]
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enum FeedResponse {
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#[oai(status = 200)]
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Ok(PlainText<String>),
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#[oai(status = 403)]
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NotAuthorized,
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#[oai(status = 500)]
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ServerError,
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}
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struct Api;
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#[OpenApi]
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impl Api {
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#[oai(path = "/add", method = "post")]
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async fn post_bookmark(
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&self,
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body: Json<BookmarkRequest>,
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auth: BearerAuth,
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) -> AddBookmarkResponse {
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if !auth.check() {
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return AddBookmarkResponse::NotAuthorized;
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}
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if let Err(e) = spawn_blocking(move || {
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let db_conn = match rusqlite::Connection::open(
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env::var("MINIBOOKFLUXMARK_DB_PATH").unwrap_or(String::from("db.sqlite")),
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) {
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Ok(c) => c,
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Err(e) => {
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println!("Failde to open db: {e}");
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return Err(e);
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}
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};
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db_conn.execute(
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"insert into bookmarks (title, url, description) values (?1, ?2, ?3)",
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(&body.title, &body.url, &body.description),
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)?;
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Ok(())
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})
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.await
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{
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println!("Failed to spawn database save: {e}");
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return AddBookmarkResponse::ServerError;
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}
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AddBookmarkResponse::Ok
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}
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#[oai(path = "/feed", method = "get")]
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async fn get_feed(&self, auth: BearerAuth) -> FeedResponse {
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if !auth.check() {
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return FeedResponse::NotAuthorized;
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}
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let mut resp = String::new();
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resp.push_str(
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"<?xml version=\"1.0\" encoding=\"UTF-8\" ?>\n<rss version=\"2.0\">\n<channel>",
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);
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match spawn_blocking(move || {
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let db_conn = match rusqlite::Connection::open(
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env::var("MINIBOOKFLUXMARK_DB_PATH").unwrap_or(String::from("db.sqlite")),
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) {
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Ok(c) => c,
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Err(e) => {
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println!("Failde to open db: {e}");
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return Err(e);
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}
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};
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let mut query = db_conn.prepare("select id, title, url, description from bookmarks")?;
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let bookmark_iter = query.query_map([], |row| {
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Ok(Bookmark {
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id: row.get(0)?,
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title: row.get(1)?,
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url: row.get(2)?,
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description: row.get(3)?,
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})
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})?;
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let bookmarks = Vec::from_iter(bookmark_iter.flatten());
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Ok(bookmarks)
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})
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.await
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{
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Ok(Ok(bookmarks)) => {
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for b in bookmarks {
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resp.push_str(&format!("<item>\n<title>{}</title>\n<link>{}</link>\n<description>{}</description>\n</item>", b.title, b.url, b.description));
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}
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}
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Ok(Err(e)) => {
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println!("Failed to read database: {e}");
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return FeedResponse::ServerError;
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}
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Err(e) => {
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println!("Failed to spawn database read: {e}");
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return FeedResponse::ServerError;
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}
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}
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resp.push_str("</channel>\n</rss>");
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FeedResponse::Ok(PlainText(resp))
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}
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}
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#[tokio::main]
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async fn main() -> Result<(), Box<dyn Error>> {
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match spawn_blocking(move || {
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let db_conn = match rusqlite::Connection::open(
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env::var("MINIBOOKFLUXMARK_DB_PATH").unwrap_or(String::from("db.sqlite")),
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) {
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Ok(c) => c,
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Err(e) => {
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println!("Failde to open db: {e}");
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return;
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}
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};
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db_conn
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.execute(
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"create table if not exists bookmarks (id integer primary key, title text not null, url text not null, description text not null)", ()
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)
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.unwrap();
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})
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.await
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{
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Ok(_) => (),
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Err(e) => println!("Failed to spawn database save: {e}"),
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}
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let api_service = OpenApiService::new(Api, "minibookfluxmark", "0.1").server("/api/v1");
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let ui = api_service.swagger_ui();
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let app = Route::new()
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.nest("/api/v1/", api_service)
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.nest("/ui/v1/", ui);
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Server::new(TcpListener::bind("0.0.0.0:3000"))
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.run(app)
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.await?;
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Ok(())
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}
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Reference in New Issue
Block a user