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Refactor -> move simple resolver to separate mod
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commit-id:3ba8d8f0
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maciektr committed Oct 22, 2024
1 parent c29cd35 commit 7c6c170
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Showing 3 changed files with 184 additions and 168 deletions.
1 change: 1 addition & 0 deletions scarb/src/resolver/algorithm/mod.rs
Original file line number Diff line number Diff line change
@@ -0,0 +1 @@

175 changes: 7 additions & 168 deletions scarb/src/resolver/mod.rs
Original file line number Diff line number Diff line change
@@ -1,17 +1,12 @@
use std::collections::HashMap;

use anyhow::{bail, Result};
use indoc::{formatdoc, indoc};
use petgraph::graphmap::DiGraphMap;
use std::collections::HashSet;
use anyhow::Result;

use crate::core::lockfile::Lockfile;
use crate::core::registry::Registry;
use crate::core::resolver::{DependencyEdge, Resolve};
use crate::core::{
DepKind, DependencyFilter, DependencyVersionReq, ManifestDependency, PackageId, Summary,
TargetKind,
};
use crate::core::resolver::Resolve;
use crate::core::Summary;

mod algorithm;
mod primitive;

/// Builds the list of all packages required to build the first argument.
///
Expand All @@ -38,163 +33,7 @@ pub async fn resolve(
registry: &dyn Registry,
lockfile: Lockfile,
) -> Result<Resolve> {
// TODO(#2): This is very bad, use PubGrub here.
let mut graph = DiGraphMap::<PackageId, DependencyEdge>::new();

let main_packages = summaries
.iter()
.map(|sum| sum.package_id)
.collect::<HashSet<PackageId>>();
let mut packages: HashMap<_, _> = HashMap::from_iter(
summaries
.iter()
.map(|s| (s.package_id.name.clone(), s.package_id)),
);

let mut summaries: HashMap<_, _> = summaries
.iter()
.map(|s| (s.package_id, s.clone()))
.collect();

let mut queue: Vec<PackageId> = summaries.keys().copied().collect();
while !queue.is_empty() {
let mut next_queue = Vec::new();

for package_id in queue {
graph.add_node(package_id);

let summary = summaries[&package_id].clone();
let dep_filter =
DependencyFilter::propagation(main_packages.contains(&summary.package_id));
for dep in summary.filtered_full_dependencies(dep_filter) {
let dep = rewrite_dependency_source_id(registry, &package_id, dep).await?;

let locked_package_id = lockfile.packages_matching(dep.clone());
let dep = if let Some(locked_package_id) = locked_package_id {
rewrite_locked_dependency(dep.clone(), locked_package_id?)
} else {
dep
};

let results = registry.query(&dep).await?;

let Some(dep_summary) = results.first() else {
bail!("cannot find package {}", dep.name)
};

let dep_target_kind: Option<TargetKind> = match dep.kind.clone() {
DepKind::Normal => None,
DepKind::Target(target_kind) => Some(target_kind),
};
let dep = dep_summary.package_id;

if let Some(existing) = packages.get(dep.name.as_ref()) {
if existing.source_id != dep.source_id {
bail!(
indoc! {"
found dependencies on the same package `{}` coming from incompatible \
sources:
source 1: {}
source 2: {}
"},
dep.name,
existing.source_id,
dep.source_id
);
}
}

let weight = graph
.edge_weight(package_id, dep)
.cloned()
.unwrap_or_default();
let weight = weight.extend(dep_target_kind);
graph.add_edge(package_id, dep, weight);
summaries.insert(dep, dep_summary.clone());

if packages.contains_key(dep.name.as_ref()) {
continue;
}

packages.insert(dep.name.clone(), dep);
next_queue.push(dep);
}
}

queue = next_queue;
}

// Detect incompatibilities and bail in case ones are found.
let mut incompatibilities = Vec::new();
for from_package in graph.nodes() {
let dep_filter = DependencyFilter::propagation(main_packages.contains(&from_package));
for manifest_dependency in summaries[&from_package].filtered_full_dependencies(dep_filter) {
let to_package = packages[&manifest_dependency.name];
if !manifest_dependency.matches_package_id(to_package) {
let message = format!(
"- {from_package} cannot use {to_package}, because {} requires {} {}",
from_package.name, to_package.name, manifest_dependency.version_req
);
incompatibilities.push(message);
}
}
}

if !incompatibilities.is_empty() {
incompatibilities.sort();
let incompatibilities = incompatibilities.join("\n");
bail!(formatdoc! {"
Version solving failed:
{incompatibilities}
Scarb does not have real version solving algorithm yet.
Perhaps in the future this conflict could be resolved, but currently,
please upgrade your dependencies to use latest versions of their dependencies.
"});
}

let resolve = Resolve { graph, summaries };
resolve.check_checksums(&lockfile)?;
Ok(resolve)
}

fn rewrite_locked_dependency(
dependency: ManifestDependency,
locked_package_id: PackageId,
) -> ManifestDependency {
ManifestDependency::builder()
.kind(dependency.kind.clone())
.name(dependency.name.clone())
.source_id(locked_package_id.source_id)
.version_req(DependencyVersionReq::Locked {
exact: locked_package_id.version.clone(),
req: dependency.version_req.clone().into(),
})
.build()
}

async fn rewrite_dependency_source_id(
registry: &dyn Registry,
package_id: &PackageId,
dependency: &ManifestDependency,
) -> Result<ManifestDependency> {
// Rewrite path dependencies for git sources.
if package_id.source_id.is_git() && dependency.source_id.is_path() {
let rewritten_dep = ManifestDependency::builder()
.kind(dependency.kind.clone())
.name(dependency.name.clone())
.source_id(package_id.source_id)
.version_req(dependency.version_req.clone())
.build();
// Check if this dependency can be queried from git source.
// E.g. packages below other package's manifest will not be accessible.
if !registry.query(&rewritten_dep).await?.is_empty() {
// If it is, return rewritten dependency.
return Ok(rewritten_dep);
}
};

Ok(dependency.clone())
primitive::resolve(summaries, registry, lockfile).await
}

#[cfg(test)]
Expand Down
176 changes: 176 additions & 0 deletions scarb/src/resolver/primitive.rs
Original file line number Diff line number Diff line change
@@ -0,0 +1,176 @@
use crate::core::lockfile::Lockfile;
use crate::core::registry::Registry;
use crate::core::resolver::DependencyEdge;
use crate::core::{
DepKind, DependencyFilter, DependencyVersionReq, ManifestDependency, PackageId, Resolve,
Summary, TargetKind,
};
use anyhow::bail;
use indoc::{formatdoc, indoc};
use petgraph::graphmap::DiGraphMap;
use std::collections::{HashMap, HashSet};

#[tracing::instrument(level = "trace", skip_all)]
pub async fn resolve(
summaries: &[Summary],
registry: &dyn Registry,
lockfile: Lockfile,
) -> anyhow::Result<Resolve> {
// TODO(#2): This is very bad, use PubGrub here.
let mut graph = DiGraphMap::<PackageId, DependencyEdge>::new();

let main_packages = summaries
.iter()
.map(|sum| sum.package_id)
.collect::<HashSet<PackageId>>();
let mut packages: HashMap<_, _> = HashMap::from_iter(
summaries
.iter()
.map(|s| (s.package_id.name.clone(), s.package_id)),
);

let mut summaries: HashMap<_, _> = summaries
.iter()
.map(|s| (s.package_id, s.clone()))
.collect();

let mut queue: Vec<PackageId> = summaries.keys().copied().collect();
while !queue.is_empty() {
let mut next_queue = Vec::new();

for package_id in queue {
graph.add_node(package_id);

let summary = summaries[&package_id].clone();
let dep_filter =
DependencyFilter::propagation(main_packages.contains(&summary.package_id));
for dep in summary.filtered_full_dependencies(dep_filter) {
let dep = rewrite_dependency_source_id(registry, &package_id, dep).await?;

let locked_package_id = lockfile.packages_matching(dep.clone());
let dep = if let Some(locked_package_id) = locked_package_id {
rewrite_locked_dependency(dep.clone(), locked_package_id?)
} else {
dep
};

let results = registry.query(&dep).await?;

let Some(dep_summary) = results.first() else {
bail!("cannot find package {}", dep.name)
};

let dep_target_kind: Option<TargetKind> = match dep.kind.clone() {
DepKind::Normal => None,
DepKind::Target(target_kind) => Some(target_kind),
};
let dep = dep_summary.package_id;

if let Some(existing) = packages.get(dep.name.as_ref()) {
if existing.source_id != dep.source_id {
bail!(
indoc! {"
found dependencies on the same package `{}` coming from incompatible \
sources:
source 1: {}
source 2: {}
"},
dep.name,
existing.source_id,
dep.source_id
);
}
}

let weight = graph
.edge_weight(package_id, dep)
.cloned()
.unwrap_or_default();
let weight = weight.extend(dep_target_kind);
graph.add_edge(package_id, dep, weight);
summaries.insert(dep, dep_summary.clone());

if packages.contains_key(dep.name.as_ref()) {
continue;
}

packages.insert(dep.name.clone(), dep);
next_queue.push(dep);
}
}

queue = next_queue;
}

// Detect incompatibilities and bail in case ones are found.
let mut incompatibilities = Vec::new();
for from_package in graph.nodes() {
let dep_filter = DependencyFilter::propagation(main_packages.contains(&from_package));
for manifest_dependency in summaries[&from_package].filtered_full_dependencies(dep_filter) {
let to_package = packages[&manifest_dependency.name];
if !manifest_dependency.matches_package_id(to_package) {
let message = format!(
"- {from_package} cannot use {to_package}, because {} requires {} {}",
from_package.name, to_package.name, manifest_dependency.version_req
);
incompatibilities.push(message);
}
}
}

if !incompatibilities.is_empty() {
incompatibilities.sort();
let incompatibilities = incompatibilities.join("\n");
bail!(formatdoc! {"
Version solving failed:
{incompatibilities}
Scarb does not have real version solving algorithm yet.
Perhaps in the future this conflict could be resolved, but currently,
please upgrade your dependencies to use latest versions of their dependencies.
"});
}

let resolve = Resolve { graph, summaries };
resolve.check_checksums(&lockfile)?;
Ok(resolve)
}

fn rewrite_locked_dependency(
dependency: ManifestDependency,
locked_package_id: PackageId,
) -> ManifestDependency {
ManifestDependency::builder()
.kind(dependency.kind.clone())
.name(dependency.name.clone())
.source_id(locked_package_id.source_id)
.version_req(DependencyVersionReq::Locked {
exact: locked_package_id.version.clone(),
req: dependency.version_req.clone().into(),
})
.build()
}

async fn rewrite_dependency_source_id(
registry: &dyn Registry,
package_id: &PackageId,
dependency: &ManifestDependency,
) -> anyhow::Result<ManifestDependency> {
// Rewrite path dependencies for git sources.
if package_id.source_id.is_git() && dependency.source_id.is_path() {
let rewritten_dep = ManifestDependency::builder()
.kind(dependency.kind.clone())
.name(dependency.name.clone())
.source_id(package_id.source_id)
.version_req(dependency.version_req.clone())
.build();
// Check if this dependency can be queried from git source.
// E.g. packages below other package's manifest will not be accessible.
if !registry.query(&rewritten_dep).await?.is_empty() {
// If it is, return rewritten dependency.
return Ok(rewritten_dep);
}
};

Ok(dependency.clone())
}

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