fix(webdav): native MOVE/DELETE/COPY now resolve root-level paths

Closes M5 / M7 / M8a / M8b.

The optimized PathResolver and the read-side find_*_by_path queries
disagree on what counts as 'a path that hits a row'. After the drive-
refactor migration rewrote the path column to drop the
"My Folder - <user>/" prefix, files PUT through the WebDAV surface
stayed reachable by GET (legacy lookup) but vanished from the
optimized resolver (strict path-match). MOVE/DELETE/COPY 404'd on
every root-level file as a result.

Introduces resolve_or_legacy: optimized resolver first, then the
GET-style legacy lookups as a strict superset. Ownership is enforced
in both branches. handle_delete / handle_move / handle_copy each
collapsed from two near-identical resolver-only + legacy-only branches
into a single match using the helper — fewer lines, identical
semantics, root-level paths now resolve.

handle_copy also fixes M8b: copy_file_with_perms takes no destination
name, so a copy to a different filename in the same folder collided
with the source. After the copy, rename the new file when dest_name
differs from source name. Mirrors what handle_move already does.
This commit is contained in:
Edouard Vanbelle
2026-06-16 23:31:04 +02:00
parent 5cb01b201d
commit 5e1c99e227
2 changed files with 172 additions and 450 deletions
+143 -363
View File
@@ -895,6 +895,51 @@ async fn handle_head(
.unwrap())
}
/// Resolve `path` to a user-owned resource using the optimized
/// PathResolver first, falling back to the legacy `get_folder_by_path` /
/// `get_file_by_path` lookups (the same ones GET uses) when the
/// optimized resolver returns NotFound.
///
/// **Why the fallback exists**: the optimized resolver and the read-side
/// `get_*_by_path` repositories don't always agree on what a "path"
/// looks like. The drive-refactor migration rewrote the `path` column
/// to strip the `My Folder - <user>/` prefix that the WebDAV dispatcher
/// (`resolve_webdav_path`) still prepends — leaving an inconsistency
/// where files PUT through the WebDAV surface stay reachable by GET
/// (legacy lookup) but invisible to the optimized resolver (strict
/// path-match). MOVE / DELETE / COPY previously 404'd on every
/// root-level file because they only used the optimized resolver.
///
/// Ownership is enforced in both branches: the optimized resolver
/// includes `user_id = $4` in its SQL; the fallback runs `assert_owner`
/// explicitly so a foreign-owned hit can't leak through.
async fn resolve_or_legacy(
state: &Arc<AppState>,
path: &str,
user_id: Uuid,
) -> Option<ResolvedResource> {
if let Some(resolver) = &state.path_resolver
&& let Ok(r) = resolver.resolve_path_for_user(path, user_id).await
{
return Some(r);
}
let user_id_str = user_id.to_string();
let folder_service = &state.applications.folder_service;
if let Ok(folder) = folder_service.get_folder_by_path(path).await
&& folder.owner_id.as_deref() == Some(&user_id_str)
{
return Some(ResolvedResource::Folder(folder));
}
let file_retrieval = &state.applications.file_retrieval_service;
if let Ok(file) = file_retrieval.get_file_by_path(path).await
&& file.owner_id.as_deref() == Some(&user_id_str)
{
return Some(ResolvedResource::File(file));
}
None
}
/// Extract every `<...>` token from a WebDAV `If:` header value.
///
/// RFC 4918 §10.4 defines a richer grammar (tagged-list / no-tag-list of
@@ -995,11 +1040,9 @@ async fn handle_put(
.get("If")
.and_then(|v| v.to_str().ok())
.map(|s| s.to_string());
if let Some(resp) = enforce_native_lock(
&state.webdav_lock_store,
if_header_owned.as_deref(),
&path,
) {
if let Some(resp) =
enforce_native_lock(&state.webdav_lock_store, if_header_owned.as_deref(), &path)
{
return Ok(resp);
}
@@ -1204,49 +1247,25 @@ async fn handle_delete(
return Err(AppError::forbidden("Cannot delete root folder"));
}
// Single-query path resolution (user-scoped)
if let Some(resolver) = &state.path_resolver {
match resolver.resolve_path_for_user(&path, user.id).await {
Ok(ResolvedResource::Folder(folder)) => {
folder_service
.delete_folder_with_perms(&folder.id, user.id)
.await
.map_err(|e| {
AppError::internal_error(format!("Failed to delete folder: {}", e))
})?;
}
Ok(ResolvedResource::File(file)) => {
file_management_service
.delete_file_with_perms(&file.id, user.id)
.await
.map_err(|e| {
AppError::internal_error(format!("Failed to delete file: {}", e))
})?;
}
Err(_) => return Err(AppError::not_found(format!("Resource not found: {}", path))),
}
} else {
// Fallback: legacy double-query path (with ownership check)
let folder_result = folder_service.get_folder_by_path(&path).await;
if let Ok(folder) = folder_result {
assert_owner(folder.owner_id.as_deref(), &user.id.to_string(), &path)?;
// Resolve via optimized resolver, falling back to the legacy
// double-query lookup (the one GET uses). Necessary because the
// optimized resolver and the read repositories disagree on path
// shape for some files; see `resolve_or_legacy` docs.
let _ = file_retrieval_service; // present for legacy fallback if needed elsewhere
match resolve_or_legacy(&state, &path, user.id).await {
Some(ResolvedResource::Folder(folder)) => {
folder_service
.delete_folder_with_perms(&folder.id, user.id)
.await
.map_err(|e| AppError::internal_error(format!("Failed to delete folder: {}", e)))?;
} else {
let file = file_retrieval_service
.get_file_by_path(&path)
.await
.map_err(|_e| AppError::not_found(format!("Resource not found: {}", path)))?;
assert_owner(file.owner_id.as_deref(), &user.id.to_string(), &path)?;
}
Some(ResolvedResource::File(file)) => {
file_management_service
.delete_file_with_perms(&file.id, user.id)
.await
.map_err(|e| AppError::internal_error(format!("Failed to delete file: {}", e)))?;
}
None => return Err(AppError::not_found(format!("Resource not found: {}", path))),
}
Ok(Response::builder()
@@ -1331,180 +1350,63 @@ async fn handle_move(
}
}
// Resolve source: single-query when PathResolver is available (user-scoped)
if let Some(resolver) = &state.path_resolver {
match resolver.resolve_path_for_user(&source_path, user.id).await {
Ok(ResolvedResource::Folder(folder)) => {
let dest_folder_name = destination_path
.split('/')
.next_back()
.unwrap_or(&destination_path);
let dest_parent_path = if let Some(idx) = destination_path.rfind('/') {
&destination_path[..idx]
} else {
""
};
// Resolve source via optimized resolver with legacy fallback (see
// `resolve_or_legacy` for the rationale). Single match collapses the
// two near-identical branches that the resolver-only + legacy-only
// versions used to keep.
let _ = file_retrieval_service; // referenced via resolve_or_legacy
let resolved = resolve_or_legacy(&state, &source_path, user.id)
.await
.ok_or_else(|| AppError::not_found(format!("Resource not found: {}", source_path)))?;
let move_dto = crate::application::dtos::folder_dto::MoveFolderDto {
parent_id: if dest_parent_path.is_empty() {
None
} else {
match folder_service.get_folder_by_path(dest_parent_path).await {
Ok(parent) => {
// SECURITY: verify destination parent belongs to caller (V-08)
assert_owner(
parent.owner_id.as_deref(),
&user.id.to_string(),
dest_parent_path,
)?;
Some(parent.id)
}
Err(_) => None,
}
},
};
folder_service
.move_folder_with_perms(&folder.id, move_dto, user.id)
.await
.map_err(AppError::from)?;
if folder.name != dest_folder_name {
let rename_dto = crate::application::dtos::folder_dto::RenameFolderDto {
name: dest_folder_name.to_string(),
};
folder_service
.rename_folder_with_perms(&folder.id, rename_dto, user.id)
.await
.map_err(AppError::from)?;
}
}
Ok(ResolvedResource::File(file)) => {
let dest_filename = destination_path
.split('/')
.next_back()
.unwrap_or(&destination_path);
let dest_parent_path = if let Some(idx) = destination_path.rfind('/') {
&destination_path[..idx]
} else {
""
};
let source_parent_path = if let Some(idx) = source_path.rfind('/') {
&source_path[..idx]
} else {
""
};
if source_parent_path != dest_parent_path {
// SECURITY: verify destination parent belongs to caller (V-08)
if !dest_parent_path.is_empty()
&& let Ok(parent) =
folder_service.get_folder_by_path(dest_parent_path).await
{
assert_owner(
parent.owner_id.as_deref(),
&user.id.to_string(),
dest_parent_path,
)?;
}
file_management_service
.move_file_with_perms(&file.id, user.id, Some(dest_parent_path.to_string()))
.await
.map_err(AppError::from)?;
}
if file.name != dest_filename {
file_management_service
.rename_file_with_perms(&file.id, user.id, dest_filename)
.await
.map_err(AppError::from)?;
}
}
Err(_) => {
return Err(AppError::not_found(format!(
"Resource not found: {}",
source_path
)));
}
}
} else {
// Fallback: legacy double-query path (with ownership check)
let folder_result = folder_service.get_folder_by_path(&source_path).await;
if let Ok(folder) = folder_result {
assert_owner(
folder.owner_id.as_deref(),
&user.id.to_string(),
&source_path,
)?;
let dest_folder_name = destination_path
.split('/')
.next_back()
.unwrap_or(&destination_path);
let dest_parent_path = if let Some(idx) = destination_path.rfind('/') {
&destination_path[..idx]
} else {
""
};
let dest_name = destination_path
.rsplit('/')
.next()
.unwrap_or(&destination_path);
let dest_parent_path = destination_path
.rfind('/')
.map(|i| &destination_path[..i])
.unwrap_or("");
let source_parent_path = source_path
.rfind('/')
.map(|i| &source_path[..i])
.unwrap_or("");
match resolved {
ResolvedResource::Folder(folder) => {
let move_dto = crate::application::dtos::folder_dto::MoveFolderDto {
parent_id: if dest_parent_path.is_empty() {
None
} else if let Ok(parent) = folder_service.get_folder_by_path(dest_parent_path).await
{
assert_owner(
parent.owner_id.as_deref(),
&user.id.to_string(),
dest_parent_path,
)?;
Some(parent.id)
} else {
match folder_service.get_folder_by_path(dest_parent_path).await {
Ok(parent) => {
// SECURITY: verify destination parent belongs to caller (V-08)
assert_owner(
parent.owner_id.as_deref(),
&user.id.to_string(),
dest_parent_path,
)?;
Some(parent.id)
}
Err(_) => None,
}
None
},
};
folder_service
.move_folder_with_perms(&folder.id, move_dto, user.id)
.await
.map_err(|e| AppError::internal_error(format!("Failed to move folder: {}", e)))?;
.map_err(AppError::from)?;
if folder.name != dest_folder_name {
if folder.name != dest_name {
let rename_dto = crate::application::dtos::folder_dto::RenameFolderDto {
name: dest_folder_name.to_string(),
name: dest_name.to_string(),
};
folder_service
.rename_folder_with_perms(&folder.id, rename_dto, user.id)
.await
.map_err(AppError::from)?;
}
} else {
let file = file_retrieval_service
.get_file_by_path(&source_path)
.await
.map_err(|_e| {
AppError::not_found(format!("Resource not found: {}", source_path))
})?;
assert_owner(file.owner_id.as_deref(), &user.id.to_string(), &source_path)?;
let dest_filename = destination_path
.split('/')
.next_back()
.unwrap_or(&destination_path);
let dest_parent_path = if let Some(idx) = destination_path.rfind('/') {
&destination_path[..idx]
} else {
""
};
let source_parent_path = if let Some(idx) = source_path.rfind('/') {
&source_path[..idx]
} else {
""
};
}
ResolvedResource::File(file) => {
if source_parent_path != dest_parent_path {
// SECURITY: verify destination parent belongs to caller (V-08)
if !dest_parent_path.is_empty()
&& let Ok(parent) = folder_service.get_folder_by_path(dest_parent_path).await
{
@@ -1519,9 +1421,9 @@ async fn handle_move(
.await
.map_err(AppError::from)?;
}
if file.name != dest_filename {
if file.name != dest_name {
file_management_service
.rename_file_with_perms(&file.id, user.id, dest_filename)
.rename_file_with_perms(&file.id, user.id, dest_name)
.await
.map_err(AppError::from)?;
}
@@ -1616,144 +1518,39 @@ async fn handle_copy(
}
}
// Resolve source: single-query when PathResolver is available (user-scoped)
if let Some(resolver) = &state.path_resolver {
match resolver.resolve_path_for_user(&source_path, user.id).await {
Ok(ResolvedResource::Folder(folder)) => {
let recursive = depth != "0";
// Resolve source via optimized resolver with legacy fallback; collapses
// the two near-identical branches the resolver-only + legacy-only
// versions used to keep.
let _ = file_retrieval_service; // referenced via resolve_or_legacy
let resolved = resolve_or_legacy(&state, &source_path, user.id)
.await
.ok_or_else(|| AppError::not_found(format!("Resource not found: {}", source_path)))?;
let dest_folder_name = destination_path
.split('/')
.next_back()
.unwrap_or(&destination_path);
let dest_parent_path = if let Some(idx) = destination_path.rfind('/') {
&destination_path[..idx]
} else {
""
};
let dest_name = destination_path
.rsplit('/')
.next()
.unwrap_or(&destination_path);
let dest_parent_path = destination_path
.rfind('/')
.map(|i| &destination_path[..i])
.unwrap_or("");
let target_parent_id = if dest_parent_path.is_empty() {
None
} else {
match folder_service.get_folder_by_path(dest_parent_path).await {
Ok(parent) => {
// SECURITY: verify destination parent belongs to caller (V-08)
assert_owner(
parent.owner_id.as_deref(),
&user.id.to_string(),
dest_parent_path,
)?;
Some(parent.id)
}
Err(_) => None,
}
};
if recursive {
let file_management_service = &state.applications.file_management_service;
file_management_service
.copy_folder_tree_with_perms(
&folder.id,
user.id,
target_parent_id,
Some(dest_folder_name.to_string()),
)
.await
.map_err(|e| {
AppError::internal_error(format!("Failed to copy folder tree: {}", e))
})?;
} else {
let create_dto = crate::application::dtos::folder_dto::CreateFolderDto {
name: dest_folder_name.to_string(),
parent_id: target_parent_id,
};
folder_service
.create_folder_with_perms(create_dto, user.id)
.await
.map_err(|e| {
AppError::internal_error(format!(
"Failed to create destination folder: {}",
e
))
})?;
}
}
Ok(ResolvedResource::File(file)) => {
let dest_parent_path = if let Some(idx) = destination_path.rfind('/') {
&destination_path[..idx]
} else {
""
};
let target_folder_id = if dest_parent_path.is_empty() {
None
} else {
match folder_service.get_folder_by_path(dest_parent_path).await {
Ok(parent) => {
// SECURITY: verify destination parent belongs to caller (V-08)
assert_owner(
parent.owner_id.as_deref(),
&user.id.to_string(),
dest_parent_path,
)?;
Some(parent.id)
}
Err(_) => None,
}
};
let file_management_service = &state.applications.file_management_service;
file_management_service
.copy_file_with_perms(&file.id, user.id, target_folder_id)
.await
.map_err(|e| AppError::internal_error(format!("Failed to copy file: {}", e)))?;
}
Err(_) => {
return Err(AppError::not_found(format!(
"Resource not found: {}",
source_path
)));
}
}
let target_parent_id = if dest_parent_path.is_empty() {
None
} else if let Ok(parent) = folder_service.get_folder_by_path(dest_parent_path).await {
assert_owner(
parent.owner_id.as_deref(),
&user.id.to_string(),
dest_parent_path,
)?;
Some(parent.id)
} else {
// Fallback: legacy double-query path (with ownership check)
let folder_result = folder_service.get_folder_by_path(&source_path).await;
None
};
if let Ok(folder) = folder_result {
assert_owner(
folder.owner_id.as_deref(),
&user.id.to_string(),
&source_path,
)?;
match resolved {
ResolvedResource::Folder(folder) => {
let recursive = depth != "0";
let dest_folder_name = destination_path
.split('/')
.next_back()
.unwrap_or(&destination_path);
let dest_parent_path = if let Some(idx) = destination_path.rfind('/') {
&destination_path[..idx]
} else {
""
};
let target_parent_id = if dest_parent_path.is_empty() {
None
} else {
match folder_service.get_folder_by_path(dest_parent_path).await {
Ok(parent) => {
// SECURITY: verify destination parent belongs to caller (V-08)
assert_owner(
parent.owner_id.as_deref(),
&user.id.to_string(),
dest_parent_path,
)?;
Some(parent.id)
}
Err(_) => None,
}
};
if recursive {
let file_management_service = &state.applications.file_management_service;
file_management_service
@@ -1761,7 +1558,7 @@ async fn handle_copy(
&folder.id,
user.id,
target_parent_id,
Some(dest_folder_name.to_string()),
Some(dest_name.to_string()),
)
.await
.map_err(|e| {
@@ -1769,7 +1566,7 @@ async fn handle_copy(
})?;
} else {
let create_dto = crate::application::dtos::folder_dto::CreateFolderDto {
name: dest_folder_name.to_string(),
name: dest_name.to_string(),
parent_id: target_parent_id,
};
folder_service
@@ -1782,43 +1579,26 @@ async fn handle_copy(
))
})?;
}
} else {
let file = file_retrieval_service
.get_file_by_path(&source_path)
.await
.map_err(|_e| {
AppError::not_found(format!("Resource not found: {}", source_path))
})?;
assert_owner(file.owner_id.as_deref(), &user.id.to_string(), &source_path)?;
let dest_parent_path = if let Some(idx) = destination_path.rfind('/') {
&destination_path[..idx]
} else {
""
};
let target_folder_id = if dest_parent_path.is_empty() {
None
} else {
match folder_service.get_folder_by_path(dest_parent_path).await {
Ok(parent) => {
// SECURITY: verify destination parent belongs to caller (V-08)
assert_owner(
parent.owner_id.as_deref(),
&user.id.to_string(),
dest_parent_path,
)?;
Some(parent.id)
}
Err(_) => None,
}
};
}
ResolvedResource::File(file) => {
// M8b fix: copy_file_with_perms takes (file_id, caller, target_folder)
// but no rename — so a copy to a different name in the SAME folder
// (typical for root-level "duplicate" pattern) collided with the
// source filename and 500'd. Mirror MOVE: copy first, then rename
// if the dest filename differs from the source's name.
let file_management_service = &state.applications.file_management_service;
file_management_service
.copy_file_with_perms(&file.id, user.id, target_folder_id)
let copied = file_management_service
.copy_file_with_perms(&file.id, user.id, target_parent_id)
.await
.map_err(|e| AppError::internal_error(format!("Failed to copy file: {}", e)))?;
if file.name != dest_name {
file_management_service
.rename_file_with_perms(&copied.id, user.id, dest_name)
.await
.map_err(|e| {
AppError::internal_error(format!("Failed to rename copied file: {}", e))
})?;
}
}
}
+29 -87
View File
@@ -180,39 +180,18 @@ pass "M4: Range bytes=0-9 → 206 + 10 bytes"
# code path where it should actually work: root-level MOVE of a
# file PUT at root. If even this 404s, the bug is broader and
# native MOVE is unusable, not just nested.
echo " M5: MOVE /webdav/m3-sample.txt → /webdav/m5-moved.txt"
echo " M5: MOVE /webdav/m3-sample.txt → /webdav/m5-moved.txt → 201/204"
STATUS=$(dav_curl -o /dev/null -w "%{http_code}" -X MOVE \
-H "Destination: $DAV_BASE/m5-moved.txt" \
"$DAV_BASE/m3-sample.txt")
case "$STATUS" in
201|204)
pass "M5: root-level MOVE → $STATUS"
;;
404)
# KNOWN BUG: native MOVE returns 404 on a file that was
# PUT at the same path, even at root level. The strict
# `resolve_path_for_user` SQL query doesn't match what
# the PUT's `save_file_from_temp_with_dedup` stored —
# most likely because the WebDAV dispatcher's path
# prepending (`resolve_webdav_path` → "My Folder - X/foo")
# doesn't match the user's actual home folder path
# field in the DB. Same root cause makes nested MOVE
# (see M3 comment) unusable too.
#
# Where the fix lives:
# `interfaces/api/handlers/webdav_handler.rs::handle_move`
# currently calls `resolver.resolve_path_for_user`. It
# should either:
# (a) fall back to `file_retrieval_service.get_file_by_path`
# (the same lookup GET uses successfully), or
# (b) normalise the source path through the same
# transformer the PUT writes through.
pass "M5: root-level MOVE → 404 (KNOWN BUG: resolve_path_for_user mismatch — pinned)"
;;
*)
fail "M5: unexpected status $STATUS"
;;
esac
[[ "$STATUS" == "201" || "$STATUS" == "204" ]] \
|| fail "M5: root-level MOVE expected 201/204, got $STATUS"
# Source is gone, destination present.
[[ "$(dav_curl -o /dev/null -w "%{http_code}" -X PROPFIND -H "Depth: 0" "$DAV_BASE/m3-sample.txt")" == "404" ]] \
|| fail "M5: source still resolvable after MOVE"
[[ "$(dav_curl -o /dev/null -w "%{http_code}" -X PROPFIND -H "Depth: 0" "$DAV_BASE/m5-moved.txt")" == "207" ]] \
|| fail "M5: destination not found after MOVE"
pass "M5: root-level MOVE → $STATUS, source gone, destination present"
# ─────────────────────────────────────────────────────────────
# M6 — MKCOL sub/ → 201
@@ -228,16 +207,11 @@ pass "M6: native MKCOL → 201"
# ─────────────────────────────────────────────────────────────
echo " M7: DELETE /webdav/m6-sub/ → 204"
STATUS=$(dav_curl -o /dev/null -w "%{http_code}" -X DELETE "$DAV_BASE/m6-sub/")
case "$STATUS" in
204) pass "M7: native DELETE → 204" ;;
404)
# If DELETE also hits the resolve_path_for_user 404 trap
# (it uses the same resolver), pin as same root-cause
# KNOWN BUG.
pass "M7: native DELETE → 404 (KNOWN BUG: same resolve_path_for_user mismatch as M5 — pinned)"
;;
*) fail "M7: unexpected status $STATUS" ;;
esac
[[ "$STATUS" == "204" ]] \
|| fail "M7: native DELETE expected 204, got $STATUS"
[[ "$(dav_curl -o /dev/null -w "%{http_code}" -X PROPFIND -H "Depth: 0" "$DAV_BASE/m6-sub/")" == "404" ]] \
|| fail "M7: folder still resolvable after DELETE"
pass "M7: native DELETE → 204, folder gone"
# ─────────────────────────────────────────────────────────────
# M8 — COPY a.txt → b.txt (pin whatever current behaviour is)
@@ -245,57 +219,25 @@ esac
# M8 source depends on whether M5 MOVE actually worked. If M5 was
# pinned as KNOWN BUG (404), the source for M8 is still
# m3-sample.txt at root, not m5-moved.txt.
echo " M8: COPY native source → /webdav/m8-copy.txt"
M8_SOURCE_URL="$DAV_BASE/m3-sample.txt"
# If M5 actually moved the file, the source name changed.
if dav_curl -o /dev/null -w "%{http_code}" -X PROPFIND -H "Depth: 0" "$DAV_BASE/m5-moved.txt" | grep -q "207"; then
M8_SOURCE_URL="$DAV_BASE/m5-moved.txt"
echo " M8: COPY /webdav/m5-moved.txt → /webdav/m8-copy.txt"
# M5 now succeeds, so the source is at m5-moved.txt. (Kept fallback
# to m3-sample.txt to surface a clear error if M5 regressed.)
M8_SOURCE_URL="$DAV_BASE/m5-moved.txt"
if ! dav_curl -o /dev/null -w "%{http_code}" -X PROPFIND -H "Depth: 0" "$DAV_BASE/m5-moved.txt" | grep -q "207"; then
M8_SOURCE_URL="$DAV_BASE/m3-sample.txt"
fi
STATUS=$(dav_curl -o /dev/null -w "%{http_code}" -X COPY \
-H "Destination: $DAV_BASE/m8-copy.txt" \
"$M8_SOURCE_URL")
case "$STATUS" in
201|204)
# Confirm source still exists (COPY != MOVE).
SRC_STATUS=$(dav_curl -o /dev/null -w "%{http_code}" -X PROPFIND -H "Depth: 0" "$M8_SOURCE_URL")
DST_STATUS=$(dav_curl -o /dev/null -w "%{http_code}" -X PROPFIND -H "Depth: 0" "$DAV_BASE/m8-copy.txt")
[[ "$SRC_STATUS" == "207" ]] \
|| fail "M8: COPY removed source ($SRC_STATUS instead of 207) — that's MOVE behaviour, not COPY"
[[ "$DST_STATUS" == "207" ]] \
|| fail "M8: destination not present after COPY ($DST_STATUS)"
pass "M8: native COPY → $STATUS, source preserved, destination present"
;;
405)
pass "M8: native COPY → 405 METHOD_NOT_ALLOWED — handler not implemented, pinned"
;;
404)
pass "M8: native COPY → 404 (KNOWN BUG: same resolve_path_for_user mismatch as M5/M7 — pinned)"
;;
500)
# KNOWN BUG: the COPY file branch at
# `interfaces/api/handlers/webdav_handler.rs::handle_copy`
# line ~1639 passes `(file.id, user.id, target_folder_id)`
# to `copy_file_with_perms` — no destination NAME. The
# copy therefore lands in the target folder under the
# SOURCE's name, ignoring the rename the client requested.
# When source and destination resolve to the same folder
# (common for root-level COPY), this collides with the
# source itself → AlreadyExists → leaks as 500.
#
# Where the fix lives: same handler — either
# (a) extend `copy_file_with_perms` to accept an
# optional new name (the folder-tree branch on
# line ~1591 already passes a name into
# `copy_folder_tree_with_perms`), or
# (b) follow the copy with a `rename_file_with_perms`
# call if `dest_filename != source.name` (mirrors
# what MOVE does at line ~1347).
pass "M8: native COPY → 500 (KNOWN BUG: dest filename discarded, collides with source — pinned)"
;;
*)
fail "M8: unexpected COPY status $STATUS"
;;
esac
[[ "$STATUS" == "201" || "$STATUS" == "204" ]] \
|| fail "M8: native COPY expected 201/204, got $STATUS"
SRC_STATUS=$(dav_curl -o /dev/null -w "%{http_code}" -X PROPFIND -H "Depth: 0" "$M8_SOURCE_URL")
DST_STATUS=$(dav_curl -o /dev/null -w "%{http_code}" -X PROPFIND -H "Depth: 0" "$DAV_BASE/m8-copy.txt")
[[ "$SRC_STATUS" == "207" ]] \
|| fail "M8: COPY removed source ($SRC_STATUS instead of 207) — that's MOVE behaviour, not COPY"
[[ "$DST_STATUS" == "207" ]] \
|| fail "M8: destination not present after COPY ($DST_STATUS)"
pass "M8: native COPY → $STATUS, source preserved, destination renamed correctly"
# ═════════════════════════════════════════════════════════════
# Group N — LOCK / UNLOCK