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63 Commits
Author SHA1 Message Date
MengMengCode 2d8552b670 feat: reset admin credentials without requiring current password and update related prompts 2026-08-14 20:34:30 +08:00
Meng MengandGitHub dbc6db4f08 Merge pull request #16 from CwithW/fix-dockerfile-missing-iproute2
fix: install iproute2 in runtime image
2026-08-14 20:00:40 +08:00
Chara White 57539df603 fix: install iproute2 in runtime image 2026-08-14 19:50:01 +08:00
MengMengCode ecce22eacf feat: add notification destination context for Telegram polling and implement related test 2026-08-14 19:09:31 +08:00
MengMengCode d37a191011 feat: add home carrier information to ModemSummary interface 2026-08-14 00:22:39 +08:00
MengMengCode ba28c7f79a Rollback 2026-08-13 23:38:45 +08:00
MengMengCode 773b44aad6 Implement 3GPP Device Identity Handling in IKE
- Added support for DEVICE_IDENTITY request as per TS 24.302.
- Implemented deviceIdentityRequested function to check for DEVICE_IDENTITY notifications.
- Created deviceIdentityNotify function to construct DEVICE_IDENTITY notifications with IMEI/IMEISV.
- Enhanced security proposal to accommodate O2 Germany's integrity-only ESP profile.
- Updated tests to validate DEVICE_IDENTITY encoding and request handling.
- Refactored security proposal to include fallback encryption and integrity algorithms.
- Improved session management to ensure proper cleanup of IPSec resources after caller deadline.
- Added comprehensive tests for security agreement parsing and algorithm support.

FIX #11
2026-08-13 23:30:00 +08:00
MengMengCode 2917378da0 fix: support O2 Germany certificate-authenticated EAP 2026-08-13 21:28:38 +08:00
MengMengCode 69b1c3eec6 fix: stabilize EM7430 hotplug support 2026-08-13 20:58:24 +08:00
MengMengCode 01e25ff12c feat: support Sierra EM7430 MBIM modems 2026-08-13 20:05:07 +08:00
MengMengCode bed8ac9fdf fix: bind physical SIMs and validate multi-arch images 2026-08-13 11:01:36 +08:00
MengMengCode 1100f20dc5 fix: discover USB smart card readers without pcscd 2026-08-13 10:53:56 +08:00
MengMengCode c9656ea3fa fix: persist admin credentials in database and discover MHI modems 2026-08-13 10:46:12 +08:00
Meng MengandGitHub cb44348a76 Merge pull request #7 from jiuliking/fix/plmn-23410-ims-interoperability
fix: support PLMN 234-10 IMS registration
2026-08-13 10:17:10 +08:00
Alex 794dd1177e [verified] fix: support PLMN 234-10 IMS registration
Select UDP P-CSCF signalling for the explicit 234-10 and 234-010 PLMN forms while preserving exact MNC length semantics. Skip incomplete ipsec-3gpp algorithm advertisements so a later complete Security-Server offer can be selected, while keeping malformed and partially specified SA parameters fail-closed.
2026-08-13 01:45:16 +08:00
MengMengCode 400f08c6c7 Enforce hard limits and hide unavailable task paths 2026-08-12 17:24:39 +08:00
MengMengCode 1380ffb419 Update Readme.md 2026-08-12 17:09:06 +08:00
MengMengCode 45b15b245f Update Readme.md 2026-08-12 16:57:16 +08:00
MengMengCode 2780dd96de Make EC20 eSIM channels coexist with VoWiFi 2026-08-12 16:56:30 +08:00
MengMengCode 2922d6a275 Wait for OpenWrt service shutdown during upgrades 2026-08-12 16:36:04 +08:00
MengMengCode 288e856fdb Stabilize OpenWrt modem startup and upgrades 2026-08-12 16:30:22 +08:00
MengMengCode f17d925c4c Fix static ARM builds and OpenWrt VoWiFi setup 2026-08-12 15:58:02 +08:00
Meng MengandGitHub 296f963885 Merge pull request #3 from MengMengCode/dependabot/go_modules/go_modules-a3c8a40308
build(deps): bump golang.org/x/crypto from 0.41.0 to 0.52.0 in the go_modules group across 1 directory
2026-08-12 02:38:34 +08:00
dependabot[bot]andGitHub 1b9546a73d build(deps): bump golang.org/x/crypto
Bumps the go_modules group with 1 update in the / directory: [golang.org/x/crypto](https://github.com/golang/crypto).


Updates `golang.org/x/crypto` from 0.41.0 to 0.52.0
- [Commits](https://github.com/golang/crypto/compare/v0.41.0...v0.52.0)

---
updated-dependencies:
- dependency-name: golang.org/x/crypto
  dependency-version: 0.52.0
  dependency-type: direct:production
  dependency-group: go_modules
...

Signed-off-by: dependabot[bot] <[email protected]>
2026-08-11 18:35:30 +00:00
MengMengCode 22487dbb1f Add PC/SC backend support for USB SIM readers
- Implemented a new `unsupportedBackend` in `backend_stub.go` to handle unsupported platforms.
- Created a `Service` struct in `service.go` to manage interactions with smart cards, including session management and identity reading.
- Added methods for reading identity, checking readiness, and authenticating with USIM applications.
- Introduced a `scriptedCard` for testing purposes in `service_test.go` to simulate card responses.
- Defined necessary types and error handling in `types.go` for better clarity and usability.
- Developed a `PCSCAdapter` in `vowifi/pcsc_adapter.go` to integrate PC/SC service with Wi-Fi calling functionalities.
- Added a new SVG icon for USB SIM readers in `public/sim-reader.svg`.
- Implemented tests to ensure correct functionality and error handling in various scenarios.
2026-08-12 02:33:32 +08:00
Meng MengandGitHub f9bb38aabe Add star history badge to README 2026-08-11 23:52:46 +08:00
MengMengCode 5bb5808706 fix: update expected local time format in WeCom SMS values test 2026-08-11 23:06:48 +08:00
Meng MengandGitHub d70937cc47 Merge pull request #2 from zAhYAng/feat/wecom-notifications
feat: add WeCom message push notifications
2026-08-11 22:56:19 +08:00
zAhYAng eab658dc90 fix: polish WeCom notification settings 2026-08-11 22:28:36 +08:00
MengMengCode 0d738d4ce4 feat: add custom phone number support to card policies
- Introduced a new field `custom_phone_number` in the CardPolicy model and database schema.
- Updated the API to handle custom phone number input, including validation and normalization.
- Modified the CardPolicyPanel component to allow users to set and save a custom phone number.
- Enhanced the settings API to include the custom phone number in responses and updates.
- Added tests to ensure the correct functionality of custom phone number handling.
- Removed hardcoded environment variable for VOCAT_ADDR in service files.
2026-08-11 21:58:28 +08:00
zAhYAng 962c58fdd1 feat: add WeCom notification settings 2026-08-11 21:41:43 +08:00
zAhYAng 7b2e005b37 feat: dispatch WeCom notifications 2026-08-11 21:39:53 +08:00
zAhYAng f1e70ecee5 feat: configure WeCom notifications 2026-08-11 21:38:09 +08:00
zAhYAng f012c556e9 feat: add WeCom payload renderer 2026-08-11 21:33:38 +08:00
zAhYAng ab8bbbc1ed docs: plan WeCom notifications and worktree setup 2026-08-11 21:19:02 +08:00
MengMengCode 609a591045 feat: enhance email validation to prevent injection attacks and improve related tests 2026-08-11 19:41:06 +08:00
MengMengCode 461054615b feat: implement automatic task recovery logic and enhance related tests 2026-08-11 19:32:22 +08:00
MengMengCode 020fb619a9 feat: enhance security by preventing exposure of sensitive credentials in logs and errors 2026-08-11 19:07:58 +08:00
MengMengCode 3cc73f1885 feat: implement eSIM notification handling and email message construction
- Add eSIM notification management in `esim_notifications.go` with functions to retrieve, list, and remove notifications.
- Implement parsing logic for pending notifications and notification metadata.
- Create tests for eSIM notification parsing and request handling in `esim_notifications_test.go`.
- Introduce email message construction in `email_message.go` to securely format and send emails.
- Add tests for email message encoding and validation in `email_message_test.go`.
- Enhance the CardPolicyAPN component to manage APN configurations, including adding, editing, and deleting custom APNs.
- Implement UI for displaying and managing APN settings with appropriate validation and user feedback.
2026-08-11 18:58:32 +08:00
MengMengCode 48fc4c5ab5 support offline flag 2026-08-11 15:59:47 +08:00
MengMengCode 707ca3c124 feat: enhance URL validation and email address parsing; refactor related components 2026-08-11 02:02:55 +08:00
MengMengCode a09f9af646 feat: update schema version and refactor proxy binding logic
- Increment schema version from 11 to 12.
- Modify ProxyResolver to use ICCID for device proxy binding resolution.
- Update tests to reflect changes in proxy binding logic using ICCID.
- Enhance DeviceBindingsDialog to manage eSIM profile bindings instead of device bindings.
- Update UI components and translations to reflect the new profile binding terminology.
- Implement pagination for automatic task runs in AutomaticTasksPage.
- Create a new Pagination component for better navigation in lists.
2026-08-11 01:23:04 +08:00
MengMengCode 928ba7746e update 2026-08-11 00:22:54 +08:00
MengMengCode 21f210d219 update readme 2026-08-10 23:05:41 +08:00
MengMengCode 8a260e86f1 Implement automatic task management with CRUD operations and UI integration
- Added `automatic_tasks.go` and `automatic_tasks_test.go` for backend logic and testing of automatic tasks.
- Created `automatic_tasks_test.go` to validate task claiming and deletion behavior.
- Developed `AutomaticTasksPage.tsx` for frontend management of automatic tasks, including task creation, editing, and execution.
- Integrated device and eSIM profile selection for task configuration.
- Implemented automatic task scheduling and retry logic in the backend.
2026-08-10 22:15:54 +08:00
MengMengCode 5b8d1a86e8 feat: enhance Telegram call handling with VoWiFi and cellular support 2026-08-10 06:07:56 +08:00
MengMengCode 4df0ae0c7d feat: expand device networking and management 2026-08-10 03:27:43 +08:00
MengMengCode d8828ff26a fix: expose IMS call failures and allow unlimited calls 2026-08-09 21:52:25 +08:00
MengMengCode 337aa3c0ab fix: route calls only through ready IMS sessions 2026-08-09 21:31:24 +08:00
MengMengCode 97ca84bbfc fix: redact Telegram tokens from errors 2026-08-09 21:14:07 +08:00
MengMengCode cc477571ac feat: add Telegram AT and USSD commands 2026-08-09 21:06:35 +08:00
MengMengCode c19156e46a fix: redirect expired sessions to login 2026-08-09 20:47:53 +08:00
MengMengCode 0e68dc6893 fix: revoke sessions after updates 2026-08-09 20:23:00 +08:00
MengMengCode 1fc6ea9b6c fix: make web updates restart cleanly 2026-08-09 20:13:50 +08:00
MengMengCode 85f8790e1e fix: allow verified in-place updates 2026-08-09 20:09:44 +08:00
MengMengCode 3d117749b2 build: speed up multi-arch Docker builds 2026-08-09 19:59:05 +08:00
MengMengCode 3604319faa feat: update SMS handling to include readyForClose channel for better session management 2026-08-09 19:35:00 +08:00
MengMengCode 9fc3f1c5b8 feat: add Telegram API URL handling and version comparison utilities
- Implemented `telegramAPIURL` and `validateTelegramAPIURL` functions for constructing and validating Telegram API URLs.
- Added semantic versioning utilities in `version.go` to compare versions and validate semantic version formats.
- Created tests for version comparison logic in `version_test.go`.
- Introduced IMS call handling in `call_runtime.go`, including methods for dialing, answering, and hanging up calls.
- Added tests for incoming call handling and validation in `call_runtime_test.go`.
- Developed a new `PluginsCard` component for managing plugins via URL or file upload in the web interface.
- Implemented plugin management functions in `extensions.ts` and created an `ExtensionPage` for displaying plugin contributions.
2026-08-09 19:28:12 +08:00
MengMengCode 93b0cf718c Merge branch 'master' of https://github.com/MengMengCode/VoCat 2026-08-09 16:59:32 +08:00
Meng MengandGitHub 03c8a2ceae Update README.md 2026-08-09 16:38:56 +08:00
Meng MengandGitHub d7a9fc9774 Add group and channel information
Added group and channel links to README.
2026-08-09 16:38:05 +08:00
Meng MengandGitHub 147721f237 Update thanks section in README.md 2026-08-09 16:25:14 +08:00
Meng MengandGitHub e24be6ef29 Add 'Thanks' section to README
Added a 'Thanks' section with community links.
2026-08-09 16:21:18 +08:00
160 changed files with 679 additions and 14669 deletions
-75
View File
@@ -1,75 +0,0 @@
name: Issue Report
description: Report a bug or problem with VoCat. Please answer every question below.
title: "[Issue]: "
labels: ["triage"]
body:
- type: markdown
attributes:
value: |
Thanks for taking the time to open an issue. Please fill in all the fields
below so we can triage and handle your report as quickly as possible.
- type: checkboxes
id: searched-existing
attributes:
label: Existing Issues
description: Have you searched through past Issues (both open and closed) to check whether this problem, or a similar one, has already been reported?
options:
- label: I have searched past Issues and found no similar report.
required: true
- type: textarea
id: description
attributes:
label: What happened?
description: Describe the problem you encountered and what you expected to happen instead.
placeholder: A clear and concise description of the issue...
validations:
required: true
- type: dropdown
id: priority
attributes:
label: Suggested Priority
description: In your opinion, what priority should this issue be handled with?
options:
- Low
- Medium
- High
validations:
required: true
- type: dropdown
id: area
attributes:
label: Affected Area
description: Do you think this is a frontend or backend error?
options:
- Frontend
- Backend
- Not sure
validations:
required: true
- type: checkboxes
id: abuse-mcc-acknowledgement
attributes:
label: Acknowledgement
description: Please read and confirm the following before submitting.
options:
- label: >-
I understand that this repository will not modify any feature code on
behalf of abusers in order to enable abuse, and that this service must
not be used in regions with MCC=460; any issues
arising from such use will not be resolved.
required: true
- type: textarea
id: error-messages
attributes:
label: Error Messages
description: Did you encounter any error messages? If so, please paste them here.
placeholder: Paste any relevant error output or logs...
render: shell
validations:
required: false
+40 -242
View File
@@ -2,18 +2,11 @@ name: Pull request size limit
on: on:
pull_request_target: pull_request_target:
branches: types: [opened, synchronize, reopened, ready_for_review]
- master
types:
- opened
- synchronize
- reopened
- ready_for_review
permissions: permissions:
contents: read contents: read
pull-requests: write pull-requests: write
issues: write
concurrency: concurrency:
group: pr-size-limit-${{ github.event.pull_request.number }} group: pr-size-limit-${{ github.event.pull_request.number }}
@@ -21,262 +14,67 @@ concurrency:
jobs: jobs:
enforce-size-limit: enforce-size-limit:
# 保持这个名字不变,这样你 Ruleset 里的 Required Check 不需要修改
name: Enforce 5,000-line limit name: Enforce 5,000-line limit
runs-on: ubuntu-latest runs-on: ubuntu-latest
timeout-minutes: 5 timeout-minutes: 2
env: env:
MAX_CHANGED_LINES: "5000" MAX_CHANGED_LINES: "5000"
PR_NUMBER: ${{ github.event.pull_request.number }} PR_NUMBER: ${{ github.event.pull_request.number }}
BASE_REF: ${{ github.event.pull_request.base.ref }}
GH_TOKEN: ${{ github.token }} GH_TOKEN: ${{ github.token }}
steps: steps:
- name: Checkout trusted base repository - name: Reject oversized pull request
uses: actions/checkout@v7
with:
fetch-depth: 0
persist-credentials: false
- name: Check conflicts and pull request size
shell: bash shell: bash
run: | run: |
set -euo pipefail set -euo pipefail
echo "Checking PR #${PR_NUMBER}" api_url="${GITHUB_API_URL}/repos/${GITHUB_REPOSITORY}/pulls/${PR_NUMBER}"
echo "Base branch: ${BASE_REF}" response="$({
curl --fail-with-body --silent --show-error \
############################################################
# Helper: comment on and close rejected PR
############################################################
reject_pr() {
local message="$1"
echo "::error::${message}"
COMMENT_PAYLOAD="$(
jq -nc \
--arg body "${message}" \
'{body: $body}'
)"
echo "Posting rejection comment..."
curl \
--fail-with-body \
--silent \
--show-error \
--request POST \
--header "Accept: application/vnd.github+json" \ --header "Accept: application/vnd.github+json" \
--header "Authorization: Bearer ${GH_TOKEN}" \ --header "Authorization: Bearer ${GH_TOKEN}" \
--header "X-GitHub-Api-Version: 2022-11-28" \ --header "X-GitHub-Api-Version: 2022-11-28" \
"${GITHUB_API_URL}/repos/${GITHUB_REPOSITORY}/issues/${PR_NUMBER}/comments" \ "${api_url}"
--data "${COMMENT_PAYLOAD}" \ })"
>/dev/null
echo "Closing PR #${PR_NUMBER}..."
curl \
--fail-with-body \
--silent \
--show-error \
--request PATCH \
--header "Accept: application/vnd.github+json" \
--header "Authorization: Bearer ${GH_TOKEN}" \
--header "X-GitHub-Api-Version: 2022-11-28" \
"${GITHUB_API_URL}/repos/${GITHUB_REPOSITORY}/pulls/${PR_NUMBER}" \
--data '{"state":"closed"}' \
>/dev/null
additions="$(jq -r '.additions' <<<"${response}")"
deletions="$(jq -r '.deletions' <<<"${response}")"
if [[ ! "${additions}" =~ ^[0-9]+$ || ! "${deletions}" =~ ^[0-9]+$ ]]; then
echo "Unable to read pull request line statistics." >&2
exit 1 exit 1
}
############################################################
# Fetch target branch and PR HEAD
############################################################
echo "Fetching base branch and PR head..."
git fetch --no-tags --force origin \
"+refs/heads/${BASE_REF}:refs/remotes/origin/base-pr-check" \
"+refs/pull/${PR_NUMBER}/head:refs/remotes/origin/pr-${PR_NUMBER}"
BASE_COMMIT="$(
git rev-parse refs/remotes/origin/base-pr-check
)"
PR_COMMIT="$(
git rev-parse refs/remotes/origin/pr-${PR_NUMBER}
)"
echo "Base commit: ${BASE_COMMIT}"
echo "PR commit: ${PR_COMMIT}"
############################################################
# STEP 1: Reject PRs with merge conflicts
############################################################
echo
echo "Checking for merge conflicts..."
set +e
git merge-tree \
--write-tree \
--quiet \
"${BASE_COMMIT}" \
"${PR_COMMIT}"
MERGE_STATUS=$?
set -e
if [[ "${MERGE_STATUS}" -eq 1 ]]; then
{
echo "### Pull request policy"
echo
echo "- Merge conflicts: ❌ Detected"
echo "- Result: Rejected"
} >> "${GITHUB_STEP_SUMMARY}"
reject_pr "This pull request has merge conflicts with the current master branch and cannot be accepted. Please update your branch with the latest master, resolve all merge conflicts locally, and submit a conflict-free pull request."
elif [[ "${MERGE_STATUS}" -ne 0 ]]; then
echo "::error::Unable to determine whether the pull request can be merged."
echo "git merge-tree returned status ${MERGE_STATUS}."
{
echo "### Pull request policy"
echo
echo "- Merge conflict check: ⚠️ Error"
echo "- Result: Check failed"
} >> "${GITHUB_STEP_SUMMARY}"
exit 1
fi fi
echo "No merge conflicts detected." changed_lines=$((additions + deletions))
############################################################
# STEP 2: Determine merge base
############################################################
if ! MERGE_BASE="$(
git merge-base "${BASE_COMMIT}" "${PR_COMMIT}"
)"; then
echo "::error::Unable to determine merge base."
{
echo "### Pull request policy"
echo
echo "- Merge conflicts: ✅ None"
echo "- Diff calculation: ⚠️ Failed"
} >> "${GITHUB_STEP_SUMMARY}"
exit 1
fi
echo "Merge base: ${MERGE_BASE}"
############################################################
# STEP 3: Calculate actual PR changed lines
############################################################
NUMSTAT_FILE="$(mktemp)"
git diff \
--no-ext-diff \
--no-textconv \
--numstat \
"${MERGE_BASE}" \
"${PR_COMMIT}" \
> "${NUMSTAT_FILE}"
ADDITIONS="$(
awk '
$1 ~ /^[0-9]+$/ {
total += $1
}
END {
print total + 0
}
' "${NUMSTAT_FILE}"
)"
DELETIONS="$(
awk '
$2 ~ /^[0-9]+$/ {
total += $2
}
END {
print total + 0
}
' "${NUMSTAT_FILE}"
)"
CHANGED_FILES="$(
awk '
END {
print NR + 0
}
' "${NUMSTAT_FILE}"
)"
CHANGED_LINES=$((ADDITIONS + DELETIONS))
############################################################
# Action summary
############################################################
{ {
echo "### Pull request policy" echo "### Pull request size"
echo echo
echo "- Merge conflicts: ✅ None" echo "- Additions: ${additions}"
echo "- Changed files: ${CHANGED_FILES}" echo "- Deletions: ${deletions}"
echo "- Additions: ${ADDITIONS}" echo "- Total changed lines: ${changed_lines}"
echo "- Deletions: ${DELETIONS}" echo "- Limit: ${MAX_CHANGED_LINES}"
echo "- Total changed lines: ${CHANGED_LINES}" } >>"${GITHUB_STEP_SUMMARY}"
echo "- Maximum allowed: ${MAX_CHANGED_LINES}"
} >> "${GITHUB_STEP_SUMMARY}"
echo
echo "Changed files: ${CHANGED_FILES}"
echo "Additions: ${ADDITIONS}"
echo "Deletions: ${DELETIONS}"
echo "Total changed lines: ${CHANGED_LINES}"
echo "Limit: ${MAX_CHANGED_LINES}"
############################################################
# STEP 4: Reject oversized PRs
############################################################
if (( CHANGED_LINES > MAX_CHANGED_LINES )); then
reject_pr "This pull request changes ${CHANGED_LINES} lines (${ADDITIONS} additions + ${DELETIONS} deletions) across ${CHANGED_FILES} files, exceeding the repository limit of ${MAX_CHANGED_LINES} changed lines. It has been closed automatically. Please split the changes into smaller pull requests."
if (( changed_lines <= MAX_CHANGED_LINES )); then
echo "Pull request is within the ${MAX_CHANGED_LINES}-line limit."
exit 0
fi fi
############################################################ curl --fail-with-body --silent --show-error \
# PASS --request PATCH \
############################################################ --header "Accept: application/vnd.github+json" \
--header "Authorization: Bearer ${GH_TOKEN}" \
--header "X-GitHub-Api-Version: 2022-11-28" \
"${api_url}" \
--data '{"state":"closed"}' >/dev/null
echo message="This pull request changes ${changed_lines} lines (${additions} additions + ${deletions} deletions), exceeding the repository limit of ${MAX_CHANGED_LINES} changed lines. It has been closed automatically. Please split the changes into smaller pull requests."
echo "Pull request passed all policy checks." comment_payload="$(jq -nc --arg body "${message}" '{body: $body}')"
echo "No merge conflicts." curl --fail-with-body --silent --show-error \
echo "Changed lines: ${CHANGED_LINES}/${MAX_CHANGED_LINES}." --request POST \
--header "Accept: application/vnd.github+json" \
--header "Authorization: Bearer ${GH_TOKEN}" \
--header "X-GitHub-Api-Version: 2022-11-28" \
"${GITHUB_API_URL}/repos/${GITHUB_REPOSITORY}/issues/${PR_NUMBER}/comments" \
--data "${comment_payload}" >/dev/null
{ echo "::error::Pull request changes ${changed_lines} lines; the maximum is ${MAX_CHANGED_LINES}."
echo exit 1
echo "### Result"
echo
echo "✅ Pull request passed."
} >> "${GITHUB_STEP_SUMMARY}"
-1
View File
@@ -10,7 +10,6 @@
*.dll *.dll
*.so *.so
*.dylib *.dylib
/fix
# ---- Cookie / secret files (NEVER commit) ---- # ---- Cookie / secret files (NEVER commit) ----
vc.jar vc.jar
-57
View File
@@ -1,57 +0,0 @@
Copyright (c) 2013, Dustin L. Howett. All rights reserved.
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions are met:
1. Redistributions of source code must retain the above copyright notice,
this list of conditions and the following disclaimer.
2. Redistributions in binary form must reproduce the above copyright notice,
this list of conditions and the following disclaimer in the documentation
and/or other materials provided with the distribution.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
POSSIBILITY OF SUCH DAMAGE.
The views and conclusions contained in the software and documentation are
those of the authors and should not be interpreted as representing official
policies, either expressed or implied, of the FreeBSD Project.
-------------------------------------------------------------------------------
Parts of this package were made available under the license covering the Go
language and all attended core libraries. That license follows.
-------------------------------------------------------------------------------
Copyright (c) 2012 The Go Authors. All rights reserved.
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions are met:
* Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
* Redistributions in binary form must reproduce the above copyright
notice, this list of conditions and the following disclaimer in the
documentation and/or other materials provided with the distribution.
* Neither the name of Google Inc. nor the names of its contributors may be
used to endorse or promote products derived from this software without
specific prior written permission.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
POSSIBILITY OF SUCH DAMAGE.
-21
View File
@@ -1,21 +0,0 @@
MIT License
Copyright (c) 2026 iniwex5
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all
copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.
-10
View File
@@ -1,10 +0,0 @@
VoCat uses the following Go module for native Qualcomm QMI support:
github.com/iniwex5/quectel-qmi-go v0.6.0
Distribution: https://proxy.golang.org/github.com/iniwex5/quectel-qmi-go/@v/v0.6.0.zip
Documentation and license metadata: https://pkg.go.dev/github.com/iniwex5/[email protected]
License: MIT
Copyright: Copyright (c) 2026 iniwex5
The full MIT license text is included in:
LICENSES/quectel-qmi-go-MIT.txt
-4
View File
@@ -212,10 +212,6 @@ Vocat reads an optional JSON configuration file from `VOCAT_CONFIG`, then applie
| `VOCAT_REPO` | `MengMengCode/VoCat` | Trusted GitHub repository used by the self-updater, in `owner/name` form. | | `VOCAT_REPO` | `MengMengCode/VoCat` | Trusted GitHub repository used by the self-updater, in `owner/name` form. |
| `GITHUB_TOKEN` | empty | Optional GitHub token for private repositories or higher API limits. | | `GITHUB_TOKEN` | empty | Optional GitHub token for private repositories or higher API limits. |
User-supplied Apple carrier bundles can be converted into reviewable,
allow-listed carrier profiles with `vocat carrier import-ipcc`; see
[docs/CARRIER_IPCC_IMPORT.md](docs/CARRIER_IPCC_IMPORT.md).
Administrator credentials are stored only in SQLite. Initialize an empty Administrator credentials are stored only in SQLite. Initialize an empty
database once with `vocat bootstrap-admin`; environment variables and JSON database once with `vocat bootstrap-admin`; environment variables and JSON
configuration cannot set or overwrite the administrator username or password. configuration cannot set or overwrite the administrator username or password.
+3 -3
View File
@@ -23,14 +23,14 @@ func runBootstrapAdmin(args []string) error {
if err := flags.Parse(args); err != nil || flags.NArg() != 0 { if err := flags.Parse(args); err != nil || flags.NArg() != 0 {
return errors.New("usage: vocat bootstrap-admin [--database path] [--username name]") return errors.New("usage: vocat bootstrap-admin [--database path] [--username name]")
} }
reader := bufio.NewReader(os.Stdin) reader := bufio.NewReader(io.LimitReader(os.Stdin, 2049))
password, err := reader.ReadString('\n') password, err := reader.ReadString('\n')
if err != nil && !errors.Is(err, io.EOF) { if err != nil && !errors.Is(err, io.EOF) {
return fmt.Errorf("read password: %w", err) return fmt.Errorf("read password: %w", err)
} }
password = strings.TrimSuffix(strings.TrimSuffix(password, "\n"), "\r") password = strings.TrimSuffix(strings.TrimSuffix(password, "\n"), "\r")
if password == "" { if len(password) < 12 || len(password) > 1024 {
return errors.New("bootstrap password cannot be empty") return errors.New("bootstrap password must contain between 12 and 1024 characters")
} }
adminUsername := strings.TrimSpace(*username) adminUsername := strings.TrimSpace(*username)
if len(adminUsername) < 1 || len(adminUsername) > 64 || strings.ContainsAny(adminUsername, "\r\n\t") { if len(adminUsername) < 1 || len(adminUsername) > 64 || strings.ContainsAny(adminUsername, "\r\n\t") {
-95
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@@ -1,95 +0,0 @@
package main
import (
"encoding/json"
"errors"
"flag"
"fmt"
"io"
"path/filepath"
"strings"
"vocat/internal/config"
"vocat/internal/vowifi"
)
func runCarrier(args []string, stdout io.Writer) error {
if len(args) == 0 {
return errors.New("usage: vocat carrier import-ipcc [flags] FILE.ipcc")
}
switch args[0] {
case "import-ipcc":
return runCarrierImportIPCC(args[1:], stdout)
default:
return fmt.Errorf("unknown carrier subcommand %q", args[0])
}
}
func runCarrierImportIPCC(args []string, stdout io.Writer) error {
flags := flag.NewFlagSet("carrier import-ipcc", flag.ContinueOnError)
flags.SetOutput(io.Discard)
var bundle string
var profileID string
var profileDir string
var install bool
var documentOnly bool
flags.StringVar(&bundle, "bundle", "", "bundle name when an IPCC contains more than one carrier bundle")
flags.StringVar(&profileID, "id", "", "override the generated carrier profile ID")
flags.StringVar(&profileDir, "profile-dir", "", "installation directory (default: next to the VoCat database)")
flags.BoolVar(&install, "install", false, "atomically install the reviewed generated profile")
flags.BoolVar(&documentOnly, "document-only", false, "print only the generated carrier profile document")
if err := flags.Parse(args); err != nil {
return err
}
if flags.NArg() != 1 {
return errors.New("usage: vocat carrier import-ipcc [--bundle NAME] [--id ID] [--document-only] [--install] [--profile-dir DIR] FILE.ipcc")
}
if documentOnly && install {
return errors.New("--document-only and --install cannot be used together")
}
if strings.TrimSpace(profileDir) != "" && !install {
return errors.New("--profile-dir requires --install")
}
result, err := vowifi.ImportCarrierIPCC(flags.Arg(0), vowifi.IPCCImportOptions{
Bundle: bundle,
ProfileID: profileID,
})
if err != nil {
return err
}
if documentOnly {
_, err := stdout.Write(result.Document)
return err
}
installedPath := ""
if install {
profileDir = strings.TrimSpace(profileDir)
if profileDir == "" {
cfg, err := config.Load()
if err != nil {
return fmt.Errorf("load configuration for carrier profile directory: %w", err)
}
profileDir = filepath.Join(filepath.Dir(cfg.DatabasePath), "carrier-profiles.d")
}
installedPath, err = vowifi.InstallCarrierIPCCResult(result, profileDir)
if err != nil {
return err
}
if absolute, absoluteErr := filepath.Abs(installedPath); absoluteErr == nil {
installedPath = absolute
}
}
output := struct {
vowifi.IPCCImportResult
InstalledPath string `json:"installed_path,omitempty"`
RestartRequired bool `json:"restart_required,omitempty"`
}{
IPCCImportResult: result,
InstalledPath: installedPath,
RestartRequired: installedPath != "",
}
encoder := json.NewEncoder(stdout)
encoder.SetIndent("", " ")
return encoder.Encode(output)
}
-74
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@@ -1,74 +0,0 @@
package main
import (
"archive/zip"
"bytes"
"encoding/json"
"os"
"path/filepath"
"testing"
"howett.net/plist"
)
func TestRunCarrierImportIPCCPreviewsAndInstallsExplicitly(t *testing.T) {
archivePath := filepath.Join(t.TempDir(), "test.ipcc")
file, err := os.Create(archivePath)
if err != nil {
t.Fatal(err)
}
archive := zip.NewWriter(file)
entry, err := archive.Create("Payload/Test.bundle/carrier.plist")
if err != nil {
t.Fatal(err)
}
var encoded bytes.Buffer
if err := plist.NewEncoder(&encoded).Encode(map[string]any{
"CarrierName": "Test Carrier",
"SupportedSIMs": []any{"99901"},
"SupportedPLMNs": []any{"99901"},
}); err != nil {
t.Fatal(err)
}
if _, err := entry.Write(encoded.Bytes()); err != nil {
t.Fatal(err)
}
if err := archive.Close(); err != nil {
t.Fatal(err)
}
if err := file.Close(); err != nil {
t.Fatal(err)
}
var preview bytes.Buffer
if err := runCarrier([]string{"import-ipcc", "--document-only", archivePath}, &preview); err != nil {
t.Fatal(err)
}
var document struct {
Version int `json:"version"`
}
if err := json.Unmarshal(preview.Bytes(), &document); err != nil || document.Version != 1 {
t.Fatalf("preview = %q, version=%d, error=%v", preview.String(), document.Version, err)
}
installDir := t.TempDir()
var output bytes.Buffer
if err := runCarrier([]string{
"import-ipcc", "--id", "cli-test", "--install", "--profile-dir", installDir, archivePath,
}, &output); err != nil {
t.Fatal(err)
}
var installed struct {
InstalledPath string `json:"installed_path"`
RestartRequired bool `json:"restart_required"`
}
if err := json.Unmarshal(output.Bytes(), &installed); err != nil {
t.Fatal(err)
}
if !installed.RestartRequired || filepath.Base(installed.InstalledPath) != "cli-test.json" {
t.Fatalf("install output = %s", output.String())
}
if _, err := os.Stat(filepath.Join(installDir, "cli-test.json")); err != nil {
t.Fatal(err)
}
}
-9
View File
@@ -21,15 +21,6 @@ Usage:
vocat serve Run the server in the foreground (use from a TTY when vocat serve Run the server in the foreground (use from a TTY when
vocat without arguments would enter the menu). vocat without arguments would enter the menu).
vocat version Print the build version and exit. vocat version Print the build version and exit.
vocat doctor Diagnose USB modem, AT, QMI, PC/SC and proxy UDP paths.
Use --repair-dji-qmi on Linux to safely wake a factory-ID
DJI/Baiwang 2ca3:4006 QMI interface without changing NV.
vocat carrier import-ipcc [flags] FILE.ipcc
Convert an Apple carrier bundle into a reviewable VoCat
profile. Preview is the default; --install writes it to
carrier-profiles.d and takes effect after restart.
Flags: --bundle NAME --id ID --document-only --install
--profile-dir DIR.
vocat update Check GitHub for a newer release and self-update. vocat update Check GitHub for a newer release and self-update.
Flags: Flags:
--check Only report whether an update is available. --check Only report whether an update is available.
-172
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@@ -1,172 +0,0 @@
package main
import (
"context"
"encoding/json"
"errors"
"flag"
"fmt"
"os"
"os/exec"
"runtime"
"strings"
"time"
"vocat/internal/modem"
"vocat/internal/pcsc"
"vocat/internal/proxy"
)
type doctorCheck struct {
Name string `json:"name"`
Status string `json:"status"`
Code string `json:"code,omitempty"`
Message string `json:"message"`
Evidence any `json:"evidence,omitempty"`
}
type doctorReport struct {
Time time.Time `json:"time"`
OS string `json:"os"`
Arch string `json:"arch"`
Checks []doctorCheck `json:"checks"`
}
type djiQMIRepairResult struct {
USBName string `json:"usb_name"`
Interface string `json:"interface"`
USBDevice string `json:"usb_device"`
OriginalDriver string `json:"original_driver,omitempty"`
ControlDevice string `json:"control_device"`
NetworkInterface string `json:"network_interface,omitempty"`
QMIProbe string `json:"qmi_probe"`
Attempts int `json:"attempts"`
}
func runDoctor(args []string) error {
flags := flag.NewFlagSet("doctor", flag.ContinueOnError)
flags.SetOutput(os.Stderr)
proxyAddress := flags.String("proxy", "", "SOCKS5 host:port to test")
proxyUsername := flags.String("proxy-username", "", "SOCKS5 username")
passwordEnv := flags.String("proxy-password-env", "VOCAT_DOCTOR_PROXY_PASSWORD", "environment variable containing the proxy password")
repairDJI := flags.Bool("repair-dji-qmi", false, "rebind DJI 2ca3:4006 interface 4 to qmi_wwan and assert DTR (Linux/root only; no NV write)")
jsonOutput := flags.Bool("json", false, "write machine-readable JSON")
timeout := flags.Duration("timeout", 12*time.Second, "per-probe timeout")
if err := flags.Parse(args); err != nil {
if errors.Is(err, flag.ErrHelp) {
return nil
}
return err
}
if flags.NArg() != 0 || *timeout <= 0 || *timeout > time.Minute {
return errors.New("usage: vocat doctor [--repair-dji-qmi] [--proxy host:port] [--proxy-username name] [--proxy-password-env ENV] [--json]")
}
report := doctorReport{Time: time.Now().UTC(), OS: runtime.GOOS, Arch: runtime.GOARCH}
add := func(name, status, code, message string, evidence any) {
report.Checks = append(report.Checks, doctorCheck{Name: name, Status: status, Code: code, Message: message, Evidence: evidence})
}
if data, err := os.ReadFile("/proc/version"); err == nil && strings.Contains(strings.ToLower(string(data)), "microsoft") {
add("host", "warning", "wsl_usbip_detected", "WSL/USBIP detected; QMI control transfers may time out even when /dev/cdc-wdm exists", nil)
} else {
add("host", "passed", "native_host", "No WSL kernel marker detected", nil)
}
ctx, cancel := context.WithTimeout(context.Background(), *timeout)
defer cancel()
if *repairDJI {
result, err := repairDJIQMI(ctx)
if err != nil {
return fmt.Errorf("repair DJI QMI binding: %w", err)
}
add("dji_qmi_repair", "passed", "dji_qmi_dtr_asserted", "DJI interface 4 was bound to qmi_wwan after a transient CDC DTR assertion; modem NV and USB identity were not changed", result)
}
candidates, discoverErr := modem.NewSystemDiscoverer().Discover(ctx)
if discoverErr != nil {
add("modem_discovery", "failed", "modem_discovery_failed", discoverErr.Error(), nil)
} else if len(candidates) == 0 {
add("modem_discovery", "warning", "no_modem", "No USB modem was discovered", nil)
} else {
add("modem_discovery", "passed", "modem_discovered", fmt.Sprintf("Discovered %d modem candidate(s)", len(candidates)), candidates)
}
for _, candidate := range candidates {
name := "modem:" + candidate.ID
if candidate.HasATPort() {
probeContext, cancelProbe := context.WithTimeout(context.Background(), minDuration(*timeout, 5*time.Second))
client, openErr := (modem.SerialOpener{}).Open(probeContext, candidate.ATPort)
if openErr != nil {
add(name+":at", "warning", "at_open_failed", openErr.Error(), candidate.ATPort.OpenPath())
} else {
response, commandErr := client.Execute(probeContext, "AT+CFUN?")
_ = client.Close()
if commandErr != nil {
add(name+":at", "warning", "at_probe_failed", commandErr.Error(), candidate.ATPort.OpenPath())
} else {
add(name+":at", "passed", "at_ready", "AT control channel responded to a read-only CFUN query", response.Text())
}
}
cancelProbe()
} else {
add(name+":at", "failed", "at_missing", "No AT port was selected", nil)
}
if strings.TrimSpace(candidate.QMIControl) == "" {
add(name+":qmi", "warning", "qmi_missing", "No cdc-wdm/QMI control node was discovered", nil)
} else if qmicli, lookErr := exec.LookPath("qmicli"); lookErr != nil {
add(name+":qmi", "warning", "qmicli_missing", "QMI node exists but qmicli is unavailable for an active DMS check", candidate.QMIControl)
} else {
probeContext, cancelProbe := context.WithTimeout(context.Background(), minDuration(*timeout, 8*time.Second))
command := exec.CommandContext(probeContext, qmicli, "-d", candidate.QMIControl, "--dms-get-operating-mode")
output, commandErr := command.CombinedOutput()
message := strings.TrimSpace(string(output))
cancelProbe()
if commandErr != nil {
code := "qmi_cid_failed"
if errors.Is(probeContext.Err(), context.DeadlineExceeded) || strings.Contains(strings.ToLower(message), "timed out") {
code = "qmi_cid_timeout"
}
add(name+":qmi", "failed", code, "qmicli DMS client allocation/read failed", message)
} else {
add(name+":qmi", "passed", "qmi_dms_ready", "qmicli allocated DMS and completed a read-only request", message)
}
}
}
readers, readerErr := pcsc.New().Readers(ctx)
if readerErr == nil {
add("pcsc", "passed", "pcsc_ready", fmt.Sprintf("PC/SC reported %d reader(s)", len(readers)), readers)
} else if errors.Is(readerErr, pcsc.ErrUnsupported) || errors.Is(readerErr, pcsc.ErrUnavailable) {
add("pcsc", "warning", "pcsc_unavailable", readerErr.Error(), nil)
} else {
add("pcsc", "failed", "pcsc_failed", readerErr.Error(), nil)
}
if strings.TrimSpace(*proxyAddress) != "" {
password := os.Getenv(strings.TrimSpace(*passwordEnv))
probeContext, cancelProbe := context.WithTimeout(context.Background(), *timeout)
result, probeErr := proxy.ProbeSOCKS5(probeContext, *proxyAddress, *proxyUsername, password, *timeout)
cancelProbe()
status := "passed"
if probeErr != nil {
status = "failed"
}
add("proxy_udp", status, result.Diagnosis, result.Hint, result)
}
if *jsonOutput {
encoder := json.NewEncoder(os.Stdout)
encoder.SetIndent("", " ")
return encoder.Encode(report)
}
for _, check := range report.Checks {
fmt.Printf("%-8s %-26s %-28s %s\n", strings.ToUpper(check.Status), check.Name, check.Code, check.Message)
}
return nil
}
func minDuration(left, right time.Duration) time.Duration {
if left < right {
return left
}
return right
}
-298
View File
@@ -1,298 +0,0 @@
//go:build linux
package main
import (
"context"
"errors"
"fmt"
"os"
"os/exec"
"path/filepath"
"strconv"
"strings"
"syscall"
"time"
"unsafe"
"golang.org/x/sys/unix"
)
const (
djiVendorID = "2ca3"
djiProductID = "4006"
djiQMIIndex = 4
)
type usbControlTransfer struct {
RequestType uint8
Request uint8
Value uint16
Index uint16
Length uint16
Timeout uint32
Data uintptr
}
func repairDJIQMI(ctx context.Context) (djiQMIRepairResult, error) {
return retryDJIQMI(ctx, 3, 500*time.Millisecond, func(attemptContext context.Context) (djiQMIRepairResult, error) {
return repairDJIQMIAt(attemptContext, "/sys", "/dev")
})
}
func retryDJIQMI(
ctx context.Context,
maxAttempts int,
delay time.Duration,
attempt func(context.Context) (djiQMIRepairResult, error),
) (djiQMIRepairResult, error) {
var result djiQMIRepairResult
var err error
for attemptNumber := 1; attemptNumber <= maxAttempts; attemptNumber++ {
result, err = attempt(ctx)
result.Attempts = attemptNumber
if err == nil {
return result, nil
}
if ctx.Err() != nil {
break
}
timer := time.NewTimer(time.Duration(attemptNumber) * delay)
select {
case <-ctx.Done():
timer.Stop()
return result, errors.Join(err, ctx.Err())
case <-timer.C:
}
}
return result, fmt.Errorf("failed after %d DTR repair attempt(s): %w", result.Attempts, err)
}
func repairDJIQMIAt(ctx context.Context, sysRoot, devRoot string) (result djiQMIRepairResult, returnErr error) {
usbRoot := filepath.Join(sysRoot, "bus", "usb", "devices")
entries, err := os.ReadDir(usbRoot)
if err != nil {
return result, fmt.Errorf("read USB topology: %w", err)
}
var usbNames []string
for _, entry := range entries {
devicePath := filepath.Join(usbRoot, entry.Name())
vendor, vendorErr := readTrimmedFile(filepath.Join(devicePath, "idVendor"))
product, productErr := readTrimmedFile(filepath.Join(devicePath, "idProduct"))
if vendorErr == nil && productErr == nil &&
strings.EqualFold(vendor, djiVendorID) && strings.EqualFold(product, djiProductID) {
usbNames = append(usbNames, entry.Name())
}
}
if len(usbNames) != 1 {
return result, fmt.Errorf("expected exactly one DJI %s:%s USB device, found %d", djiVendorID, djiProductID, len(usbNames))
}
result.USBName = usbNames[0]
result.Interface = fmt.Sprintf("%s:1.%d", result.USBName, djiQMIIndex)
devicePath := filepath.Join(usbRoot, result.USBName)
interfacePath := filepath.Join(usbRoot, result.Interface)
if _, err := os.Stat(interfacePath); err != nil {
return result, fmt.Errorf("DJI QMI interface %s unavailable: %w", result.Interface, err)
}
busNumber, err := readUSBNumber(filepath.Join(devicePath, "busnum"))
if err != nil {
return result, err
}
deviceNumber, err := readUSBNumber(filepath.Join(devicePath, "devnum"))
if err != nil {
return result, err
}
result.USBDevice = filepath.Join(devRoot, "bus", "usb", fmt.Sprintf("%03d", busNumber), fmt.Sprintf("%03d", deviceNumber))
result.OriginalDriver = usbInterfaceDriver(interfacePath)
if result.OriginalDriver != "" && result.OriginalDriver != "option" && result.OriginalDriver != "qmi_wwan" {
return result, fmt.Errorf("refusing to replace unexpected interface driver %q", result.OriginalDriver)
}
driversRoot := filepath.Join(sysRoot, "bus", "usb", "drivers")
if _, err := os.Stat(filepath.Join(driversRoot, "qmi_wwan")); err != nil {
modprobe, lookErr := exec.LookPath("modprobe")
if lookErr != nil {
return result, errors.New("qmi_wwan is not loaded and modprobe is unavailable")
}
if output, loadErr := exec.CommandContext(ctx, modprobe, "qmi_wwan").CombinedOutput(); loadErr != nil {
return result, fmt.Errorf("load qmi_wwan: %w: %s", loadErr, strings.TrimSpace(string(output)))
}
}
interfaceDetached := false
restoreOriginal := func() {
if !interfaceDetached {
return
}
if currentDriver := usbInterfaceDriver(interfacePath); currentDriver != "" {
_ = writeSysfs(filepath.Join(driversRoot, currentDriver, "unbind"), result.Interface)
}
if result.OriginalDriver != "" {
_ = writeSysfs(filepath.Join(driversRoot, result.OriginalDriver, "bind"), result.Interface)
}
}
defer func() {
if returnErr != nil {
restoreOriginal()
}
}()
if result.OriginalDriver != "" {
if err := writeSysfs(filepath.Join(driversRoot, result.OriginalDriver, "unbind"), result.Interface); err != nil {
return result, fmt.Errorf("unbind %s from %s: %w", result.OriginalDriver, result.Interface, err)
}
interfaceDetached = true
}
if err := assertUSBDTR(result.USBDevice, djiQMIIndex); err != nil {
return result, err
}
bindPath := filepath.Join(driversRoot, "qmi_wwan", "bind")
if err := writeSysfs(bindPath, result.Interface); err != nil {
newIDErr := writeSysfs(filepath.Join(driversRoot, "qmi_wwan", "new_id"), djiVendorID+" "+djiProductID)
if newIDErr != nil && !errors.Is(newIDErr, syscall.EEXIST) {
return result, fmt.Errorf("register DJI qmi_wwan dynamic ID after bind failure %v: %w", err, newIDErr)
}
if usbInterfaceDriver(interfacePath) != "qmi_wwan" {
if retryErr := writeSysfs(bindPath, result.Interface); retryErr != nil {
return result, fmt.Errorf("bind qmi_wwan to %s: %w", result.Interface, retryErr)
}
}
}
if driver := usbInterfaceDriver(interfacePath); driver != "qmi_wwan" {
return result, fmt.Errorf("interface %s driver is %q after qmi_wwan bind", result.Interface, driver)
}
deadline := time.Now().Add(2 * time.Second)
for {
result.ControlDevice = firstDeviceNode(filepath.Join(interfacePath, "usbmisc"), devRoot, "cdc-wdm")
result.NetworkInterface = firstEntryName(filepath.Join(interfacePath, "net"), "")
if result.ControlDevice != "" {
break
}
if err := ctx.Err(); err != nil {
return result, err
}
if time.Now().After(deadline) {
return result, fmt.Errorf("qmi_wwan bound but no cdc-wdm node appeared for %s", result.Interface)
}
time.Sleep(25 * time.Millisecond)
}
time.Sleep(250 * time.Millisecond)
qmicli, err := exec.LookPath("qmicli")
if err != nil {
return result, errors.New("qmicli is required to verify DJI QMI readiness after DTR repair")
}
probeContext, cancelProbe := context.WithTimeout(ctx, 8*time.Second)
output, probeErr := exec.CommandContext(probeContext, qmicli, "-d", result.ControlDevice, "--dms-get-operating-mode").CombinedOutput()
cancelProbe()
result.QMIProbe = strings.TrimSpace(string(output))
if probeErr != nil {
if probeContext.Err() != nil {
probeErr = errors.Join(probeErr, probeContext.Err())
}
return result, fmt.Errorf("DMS readiness check after DTR repair: %w: %s", probeErr, result.QMIProbe)
}
interfaceDetached = false
return result, nil
}
func assertUSBDTR(devicePath string, interfaceIndex int) error {
fd, err := unix.Open(devicePath, unix.O_RDWR|unix.O_CLOEXEC, 0)
if err != nil {
return fmt.Errorf("open USB device %s: %w", devicePath, err)
}
defer unix.Close(fd)
if err := setUSBControlLineState(fd, interfaceIndex, false); err != nil {
return fmt.Errorf("clear CDC DTR on %s interface %d: %w", devicePath, interfaceIndex, err)
}
time.Sleep(50 * time.Millisecond)
if err := setUSBControlLineState(fd, interfaceIndex, true); err != nil {
return fmt.Errorf("assert CDC DTR on %s interface %d: %w", devicePath, interfaceIndex, err)
}
// QDC507 acknowledges the control transfer before its QMI firmware is ready.
time.Sleep(time.Second)
return nil
}
func setUSBControlLineState(fd, interfaceIndex int, dtr bool) error {
var value uint16
if dtr {
value = 1 // USB_CDC_CTRL_DTR
}
transfer := usbControlTransfer{
RequestType: 0x21, // host-to-device, class, interface
Request: 0x22, // USB_CDC_REQ_SET_CONTROL_LINE_STATE
Value: value,
Index: uint16(interfaceIndex),
Timeout: 5000,
}
const ioctlDirectionReadWrite = uintptr(3)
request := ioctlDirectionReadWrite<<30 |
uintptr(unsafe.Sizeof(transfer))<<16 |
uintptr('U')<<8
_, _, errno := unix.Syscall(unix.SYS_IOCTL, uintptr(fd), request, uintptr(unsafe.Pointer(&transfer)))
if errno != 0 {
return errno
}
return nil
}
func readTrimmedFile(path string) (string, error) {
data, err := os.ReadFile(path)
if err != nil {
return "", err
}
return strings.TrimSpace(string(data)), nil
}
func readUSBNumber(path string) (int, error) {
value, err := readTrimmedFile(path)
if err != nil {
return 0, fmt.Errorf("read %s: %w", filepath.Base(path), err)
}
number, err := strconv.Atoi(value)
if err != nil || number < 1 || number > 999 {
return 0, fmt.Errorf("invalid %s %q", filepath.Base(path), value)
}
return number, nil
}
func usbInterfaceDriver(interfacePath string) string {
resolved, err := filepath.EvalSymlinks(filepath.Join(interfacePath, "driver"))
if err != nil {
return ""
}
return filepath.Base(resolved)
}
func writeSysfs(path, value string) error {
file, err := os.OpenFile(path, os.O_WRONLY, 0)
if err != nil {
return err
}
_, writeErr := file.WriteString(value)
closeErr := file.Close()
return errors.Join(writeErr, closeErr)
}
func firstDeviceNode(directory, devRoot, prefix string) string {
name := firstEntryName(directory, prefix)
if name == "" {
return ""
}
return filepath.Join(devRoot, name)
}
func firstEntryName(directory, prefix string) string {
entries, err := os.ReadDir(directory)
if err != nil {
return ""
}
for _, entry := range entries {
if strings.HasPrefix(entry.Name(), prefix) {
return entry.Name()
}
}
return ""
}
-81
View File
@@ -1,81 +0,0 @@
//go:build linux
package main
import (
"context"
"errors"
"os"
"path/filepath"
"testing"
"time"
"unsafe"
)
func TestDJIUSBControlTransferLayout(t *testing.T) {
var transfer usbControlTransfer
if got := unsafe.Sizeof(transfer); got != 24 {
t.Fatalf("usbControlTransfer size = %d, want 24", got)
}
if transfer.RequestType != 0 || transfer.Request != 0 {
t.Fatal("zero-value transfer unexpectedly initialized")
}
}
func TestReadUSBNumber(t *testing.T) {
directory := t.TempDir()
path := filepath.Join(directory, "busnum")
if err := os.WriteFile(path, []byte("12\n"), 0o600); err != nil {
t.Fatal(err)
}
if got, err := readUSBNumber(path); err != nil || got != 12 {
t.Fatalf("readUSBNumber() = %d, %v, want 12, nil", got, err)
}
if err := os.WriteFile(path, []byte("0\n"), 0o600); err != nil {
t.Fatal(err)
}
if _, err := readUSBNumber(path); err == nil {
t.Fatal("readUSBNumber(0) unexpectedly succeeded")
}
}
func TestWriteSysfsDoesNotCreateMissingPath(t *testing.T) {
path := filepath.Join(t.TempDir(), "missing")
if err := writeSysfs(path, "value"); err == nil {
t.Fatal("writeSysfs(missing) unexpectedly succeeded")
}
if _, err := os.Stat(path); !os.IsNotExist(err) {
t.Fatalf("missing sysfs path was created: %v", err)
}
}
func TestRetryDJIQMISucceedsAfterTransientFailures(t *testing.T) {
attempts := 0
result, err := retryDJIQMI(context.Background(), 3, time.Millisecond, func(context.Context) (djiQMIRepairResult, error) {
attempts++
if attempts < 3 {
return djiQMIRepairResult{}, errors.New("transient QMI timeout")
}
return djiQMIRepairResult{ControlDevice: "/dev/cdc-wdm0"}, nil
})
if err != nil {
t.Fatalf("retryDJIQMI() error = %v", err)
}
if attempts != 3 || result.Attempts != 3 {
t.Fatalf("attempts = %d, result.Attempts = %d, want 3", attempts, result.Attempts)
}
}
func TestRetryDJIQMIStopsAfterBoundedAttempts(t *testing.T) {
attempts := 0
_, err := retryDJIQMI(context.Background(), 2, time.Millisecond, func(context.Context) (djiQMIRepairResult, error) {
attempts++
return djiQMIRepairResult{}, errors.New("persistent failure")
})
if err == nil {
t.Fatal("retryDJIQMI() unexpectedly succeeded")
}
if attempts != 2 {
t.Fatalf("attempts = %d, want 2", attempts)
}
}
-12
View File
@@ -1,12 +0,0 @@
//go:build !linux
package main
import (
"context"
"errors"
)
func repairDJIQMI(context.Context) (djiQMIRepairResult, error) {
return djiQMIRepairResult{}, errors.New("DJI QMI repair is supported only on Linux")
}
-9
View File
@@ -1,9 +0,0 @@
package main
import "testing"
func TestDoctorHelpIsSuccessful(t *testing.T) {
if err := runDoctor([]string{"--help"}); err != nil {
t.Fatalf("runDoctor(--help) error = %v", err)
}
}
-31
View File
@@ -1,31 +0,0 @@
package main
import (
"os"
"strings"
"testing"
)
func TestInstallerValidatesDatabaseBeforeReplacingBinary(t *testing.T) {
scriptBytes, err := os.ReadFile("../../scripts/install.sh")
if err != nil {
t.Fatal(err)
}
script := string(scriptBytes)
mainStart := strings.LastIndex(script, "# --- Main ")
if mainStart < 0 {
t.Fatal("installer main section not found")
}
main := script[mainStart:]
validateAt := strings.Index(main, `bootstrap_admin "${VOCAT_TMP}/vocat"`)
installAt := strings.Index(main, "install_binary")
if validateAt < 0 {
t.Fatal("installer does not validate the database with the downloaded binary")
}
if installAt < 0 {
t.Fatal("installer does not install the downloaded binary")
}
if validateAt > installAt {
t.Fatal("installer replaces the current binary before validating database compatibility")
}
}
+15 -48
View File
@@ -27,7 +27,6 @@ import (
"vocat/internal/extensions" "vocat/internal/extensions"
"vocat/internal/httpsmode" "vocat/internal/httpsmode"
"vocat/internal/loghub" "vocat/internal/loghub"
"vocat/internal/modem"
"vocat/internal/pcsc" "vocat/internal/pcsc"
"vocat/internal/server" "vocat/internal/server"
"vocat/internal/store" "vocat/internal/store"
@@ -77,16 +76,6 @@ func main() {
logger.Error("update failed", "error", err) logger.Error("update failed", "error", err)
os.Exit(1) os.Exit(1)
} }
case "doctor":
if err := runDoctor(rest); err != nil {
logger.Error("doctor failed", "error", err)
os.Exit(1)
}
case "carrier":
if err := runCarrier(rest, os.Stdout); err != nil {
logger.Error("carrier command failed", "error", err)
os.Exit(1)
}
case "menu": case "menu":
if err := runMenu(logger); err != nil { if err := runMenu(logger); err != nil {
logger.Error("menu failed", "error", err) logger.Error("menu failed", "error", err)
@@ -130,10 +119,6 @@ func run(logger *slog.Logger, logs *loghub.Hub) error {
if err != nil { if err != nil {
return fmt.Errorf("load configuration: %w", err) return fmt.Errorf("load configuration: %w", err)
} }
carrierProfileDir := filepath.Join(filepath.Dir(cfg.DatabasePath), "carrier-profiles.d")
if err := vowifi.LoadCarrierProfileDirectory(carrierProfileDir); err != nil {
return fmt.Errorf("load installed carrier profiles: %w", err)
}
instanceLock, err := lockServerInstance(cfg.DatabasePath) instanceLock, err := lockServerInstance(cfg.DatabasePath)
if err != nil { if err != nil {
return err return err
@@ -206,7 +191,7 @@ func run(logger *slog.Logger, logs *loghub.Hub) error {
} }
cardReaders := pcsc.New() cardReaders := pcsc.New()
deviceManager, err := device.NewManager(device.Options{CardReaders: cardReaders, Logger: logger}) deviceManager, err := device.NewManager(device.Options{CardReaders: cardReaders})
if err != nil { if err != nil {
return fmt.Errorf("create device manager: %w", err) return fmt.Errorf("create device manager: %w", err)
} }
@@ -595,13 +580,6 @@ func configureVoWiFiRuntime(
if err != nil { if err != nil {
return nil, err return nil, err
} }
nativeQMIAdapter, err := vowifi.NewNativeQMIAdapter(nativeQMIControllerMapper{Mapper: mapper, Devices: deviceManager}, func(deviceID string) bool {
deviceConfig, configErr := database.Device(context.Background(), deviceID)
return configErr == nil && deviceConfig.VoWiFiEnabled
})
if err != nil {
return nil, err
}
pcscAdapter, err := vowifi.NewPCSCAdapter(cardReaders, func(ctx context.Context, deviceID string) (pcsc.Selector, string, error) { pcscAdapter, err := vowifi.NewPCSCAdapter(cardReaders, func(ctx context.Context, deviceID string) (pcsc.Selector, string, error) {
config, resolveErr := database.Device(ctx, strings.TrimSpace(deviceID)) config, resolveErr := database.Device(ctx, strings.TrimSpace(deviceID))
if resolveErr != nil { if resolveErr != nil {
@@ -627,10 +605,8 @@ func configureVoWiFiRuntime(
adapter := vowifiDeviceAdapter(ec20Adapter) adapter := vowifiDeviceAdapter(ec20Adapter)
if deviceConfig.DeviceType == store.DeviceTypeUSBSIMReader { if deviceConfig.DeviceType == store.DeviceTypeUSBSIMReader {
adapter = pcscAdapter adapter = pcscAdapter
} else if deviceConfig.DeviceType == store.DeviceTypeWiFi410 {
adapter = nativeQMIAdapter
} }
return newVoWiFiOrchestrator(deviceConfig, database, adapter, logger) return newVoWiFiOrchestrator(deviceConfig, database, adapter)
}, },
}) })
@@ -729,25 +705,26 @@ func newVoWiFiOrchestrator(
deviceConfig store.Device, deviceConfig store.Device,
database *store.Store, database *store.Store,
adapter vowifiDeviceAdapter, adapter vowifiDeviceAdapter,
logger *slog.Logger,
) (*vowifi.Orchestrator, error) { ) (*vowifi.Orchestrator, error) {
apn := deviceConfig.APN apn := deviceConfig.APN
if apn == "" { if apn == "" {
apn = "ims" apn = "ims"
} }
tunnelProvider, err := ike.NewProvider(ike.Config{ tunnelProvider, err := ike.NewProvider(ike.Config{APN: apn})
APN: apn, Logger: logger, AutoProposalFallback: true,
})
if err != nil { if err != nil {
return nil, fmt.Errorf("device %q IKE provider: %w", deviceConfig.ID, err) return nil, fmt.Errorf("device %q IKE provider: %w", deviceConfig.ID, err)
} }
imsProvider, err := ims.NewProvider(adapter, ims.Config{ imsProvider, err := ims.NewProvider(adapter, ims.Config{
Logger: logger, // The userspace SWu data plane carries protected P-CSCF signalling over
// Carrier-specific transport and SMSC defaults live in the shared data // TCP by default. UK PLMN 234-10 exposes its P-CSCF over UDP/5060 on SWu.
// profile. Prefer network-provided P-CSCF hints, then safely try the Transport: "tcp",
// alternate transport only if no SIP response was observed. TransportByPLMN: map[string]string{
Transport: "tcp", "23410": "udp",
AutoTransportFallback: true, "234010": "udp",
},
// Some Vodafone UK SIM profiles leave AT+CSCA empty; Vodafone publishes
// this service-centre number for manual SMS setup.
SMSCenter: "+447785016005",
OnSMS: func(ctx context.Context, message ims.ReceivedSMS) error { OnSMS: func(ctx context.Context, message ims.ReceivedSMS) error {
extra, _ := json.Marshal(map[string]any{ extra, _ := json.Marshal(map[string]any{
"transport": "ims", "transport": "ims",
@@ -859,9 +836,9 @@ func provisionDiscoveredDevices(
} }
for _, discovered := range manager.List() { for _, discovered := range manager.List() {
candidate := discovered.Candidate candidate := discovered.Candidate
deviceType := provisionedDeviceType(candidate)
backend := "at" backend := "at"
control := candidate.ATPort.OpenPath() control := candidate.ATPort.OpenPath()
deviceType := store.DeviceTypePCIeEC20EC25
esimTransport := backend esimTransport := backend
if candidate.QMIControl != "" { if candidate.QMIControl != "" {
backend = "qmi" backend = "qmi"
@@ -878,7 +855,6 @@ func provisionDiscoveredDevices(
if name == "" || strings.EqualFold(name, "Android") { if name == "" || strings.EqualFold(name, "Android") {
name = "Quectel EC20 / EC25" name = "Quectel EC20 / EC25"
} }
supportsSMS := deviceType != store.DeviceTypeWiFi410
if err := database.UpsertDevice(ctx, store.Device{ if err := database.UpsertDevice(ctx, store.Device{
ID: discovered.ID, ID: discovered.ID,
Name: name, Name: name,
@@ -895,7 +871,7 @@ func provisionDiscoveredDevices(
DeviceBackend: backend, DeviceBackend: backend,
ESIMTransport: esimTransport, ESIMTransport: esimTransport,
NetworkEnabled: false, NetworkEnabled: false,
SMSEnabled: supportsSMS, SMSEnabled: true,
VoWiFiEnabled: true, VoWiFiEnabled: true,
}); err != nil { }); err != nil {
return err return err
@@ -904,15 +880,6 @@ func provisionDiscoveredDevices(
return nil return nil
} }
func provisionedDeviceType(candidate modem.Candidate) string {
controlName := filepath.Base(filepath.Clean(candidate.QMIControl))
if candidate.HardwareKind == "wwan" &&
strings.HasPrefix(controlName, "wwan") && strings.Contains(controlName, "qmi") {
return store.DeviceTypeWiFi410
}
return store.DeviceTypePCIeEC20EC25
}
// persistLogsToStore subscribes to the live log hub and durably appends every // persistLogsToStore subscribes to the live log hub and durably appends every
// entry to the log_events table, so runtime logs survive restarts and can be // entry to the log_events table, so runtime logs survive restarts and can be
// pruned by the configured retention policy. // pruned by the configured retention policy.
-21
View File
@@ -217,24 +217,3 @@ func TestEnforceCardRegionIgnoresUnknownOrNotReadySIM(t *testing.T) {
t.Fatalf("expected no card policies, got %d", len(policies)) t.Fatalf("expected no card policies, got %d", len(policies))
} }
} }
func TestProvisionedDeviceTypeRecognizesNativeWWAN(t *testing.T) {
native := modem.Candidate{
HardwareKind: "wwan",
USBPath: "/sys/devices/pci0000:00/0000:00:00.0/wwan/wwan0",
QMIControl: "/dev/wwan0qmi0",
ATPort: modem.Port{Path: "/dev/wwan0at0"},
}
if got := provisionedDeviceType(native); got != store.DeviceTypeWiFi410 {
t.Fatalf("native WWAN type = %q, want %q", got, store.DeviceTypeWiFi410)
}
usb := modem.Candidate{
USBPath: "/sys/bus/usb/devices/1-6",
QMIControl: "/dev/cdc-wdm0",
ATPort: modem.Port{Path: "/dev/ttyUSB2"},
}
if got := provisionedDeviceType(usb); got != store.DeviceTypePCIeEC20EC25 {
t.Fatalf("USB modem type = %q, want %q", got, store.DeviceTypePCIeEC20EC25)
}
}
+6 -6
View File
@@ -198,7 +198,8 @@ func menuResetAdminCredentials(reader *bufio.Reader, m *menu) error {
if err != nil { if err != nil {
return fmt.Errorf("%w: %v", errMenuConfig, err) return fmt.Errorf("%w: %v", errMenuConfig, err)
} }
ctx := context.Background() ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
defer cancel()
database, err := store.Open(ctx, cfg.DatabasePath) database, err := store.Open(ctx, cfg.DatabasePath)
if err != nil { if err != nil {
@@ -214,6 +215,7 @@ func menuResetAdminCredentials(reader *bufio.Reader, m *menu) error {
if err != nil { if err != nil {
return fmt.Errorf("%w: %v", errMenuStore, err) return fmt.Errorf("%w: %v", errMenuStore, err)
} }
fmt.Print(m.newUsername(admin.Username)) fmt.Print(m.newUsername(admin.Username))
username, err := reader.ReadString('\n') username, err := reader.ReadString('\n')
if err != nil { if err != nil {
@@ -523,7 +525,6 @@ func menuUpdate(m *menu, logger *slog.Logger) error {
} }
fmt.Println(m.updateChecking()) fmt.Println(m.updateChecking())
if err := update.Run(logger, []string{"--repo", repo}); err != nil { if err := update.Run(logger, []string{"--repo", repo}); err != nil {
logger.Error("menu update failed", "error", err)
return fmt.Errorf("%w: %v", errUpdateFailed, err) return fmt.Errorf("%w: %v", errUpdateFailed, err)
} }
return nil return nil
@@ -595,7 +596,7 @@ func (m *menu) msg(key string) string {
"prompt": {"请选择: ", "Select: "}, "prompt": {"请选择: ", "Select: "},
"invalid": {"无效选项,请重试。按 Ctrl+C 退出。", "Invalid choice, try again. Press Ctrl+C to exit."}, "invalid": {"无效选项,请重试。按 Ctrl+C 退出。", "Invalid choice, try again. Press Ctrl+C to exit."},
"new_username": {"新用户名(直接回车保留 %s: ", "New username (Enter to keep %s): "}, "new_username": {"新用户名(直接回车保留 %s: ", "New username (Enter to keep %s): "},
"new_pw": {"新密码: ", "New password: "}, "new_pw": {"新密码 (至少 12 位): ", "New password (min 12 chars): "},
"confirm_pw": {"确认新密码: ", "Confirm new password: "}, "confirm_pw": {"确认新密码: ", "Confirm new password: "},
"pw_changed": {"管理员账号密码已修改,现有 Web 会话已退出。", "Administrator credentials changed; existing Web sessions were signed out."}, "pw_changed": {"管理员账号密码已修改,现有 Web 会话已退出。", "Administrator credentials changed; existing Web sessions were signed out."},
"current_web_address": {"当前 Web 监听地址: %s", "Current Web listening address: %s"}, "current_web_address": {"当前 Web 监听地址: %s", "Current Web listening address: %s"},
@@ -687,11 +688,10 @@ func (m *menu) errorPrefix(err error) string {
} }
return "重启失败。" return "重启失败。"
case errors.Is(err, errUpdateFailed): case errors.Is(err, errUpdateFailed):
detail := strings.TrimPrefix(err.Error(), errUpdateFailed.Error()+": ")
if m.lang == "en" { if m.lang == "en" {
return "Update failed: " + detail return "Update failed."
} }
return "更新失败: " + detail return "更新失败。"
case errors.Is(err, errMenuConfig): case errors.Is(err, errMenuConfig):
if m.lang == "en" { if m.lang == "en" {
return "Failed to load configuration." return "Failed to load configuration."
-76
View File
@@ -1,76 +0,0 @@
package main
import (
"context"
"vocat/internal/device"
"vocat/internal/vowifi"
"vocat/internal/vowifi/integration"
)
// nativeQMIControllerMapper keeps the configured Web/API device ID stable
// while Linux exposes the physical MHI modem under its discovery ID.
type nativeQMIControllerMapper struct {
Mapper integration.ATMapper
Devices *device.Manager
}
func (mapper nativeQMIControllerMapper) physical(configuredID string) (string, error) {
entry, err := mapper.Mapper.Get(configuredID)
if err != nil {
return "", err
}
return entry.ID, nil
}
func (mapper nativeQMIControllerMapper) ReadNativeQMIIdentity(ctx context.Context, id string) (string, string, string, string, string, error) {
physical, err := mapper.physical(id)
if err != nil {
return "", "", "", "", "", err
}
return mapper.Devices.ReadNativeQMIIdentity(ctx, physical)
}
func (mapper nativeQMIControllerMapper) ReadSIMMetadata(ctx context.Context, id string) (vowifi.SIMMetadata, error) {
return mapper.Mapper.ReadSIMMetadata(ctx, id)
}
func (mapper nativeQMIControllerMapper) ProbeNativeQMIApplication(ctx context.Context, id, preference string) ([]byte, string, error) {
physical, err := mapper.physical(id)
if err != nil {
return nil, "", err
}
return mapper.Devices.ProbeNativeQMIApplication(ctx, physical, preference)
}
func (mapper nativeQMIControllerMapper) AuthenticateNativeQMI(ctx context.Context, id string, aid, apdu []byte) ([]byte, error) {
physical, err := mapper.physical(id)
if err != nil {
return nil, err
}
return mapper.Devices.AuthenticateNativeQMI(ctx, physical, aid, apdu)
}
func (mapper nativeQMIControllerMapper) NativeQMIRadioSnapshot(ctx context.Context, id string) (int, bool, error) {
physical, err := mapper.physical(id)
if err != nil {
return 0, false, err
}
return mapper.Devices.NativeQMIRadioSnapshot(ctx, physical)
}
func (mapper nativeQMIControllerMapper) StopNativeQMICellularData(ctx context.Context, id string) error {
physical, err := mapper.physical(id)
if err != nil {
return err
}
return mapper.Devices.StopNativeQMICellularData(ctx, physical)
}
func (mapper nativeQMIControllerMapper) SetNativeQMIRadioOff(ctx context.Context, id string, off bool) error {
physical, err := mapper.physical(id)
if err != nil {
return err
}
return mapper.Devices.SetNativeQMIRadioOff(ctx, physical, off)
}
-19
View File
@@ -195,25 +195,6 @@ Vocat 先从 `VOCAT_CONFIG` 读取可选的 JSON 配置文件,再应用 `VOCAT_*
请勿将 Telegram token、SMTP 密码、Webhook 密钥、SIM 凭据或其他私密数据存放在仓库中。请通过应用设置或受保护的环境文件来配置它们。 请勿将 Telegram token、SMTP 密码、Webhook 密钥、SIM 凭据或其他私密数据存放在仓库中。请通过应用设置或受保护的环境文件来配置它们。
## Apple IPCC 运营商规则导入
VoCat 可以离线解析用户提供的 `.ipcc`,将 Apple 的 XML/二进制 plist
转换为可审查的运营商 Profile。默认只预览,不会修改配置:
```bash
vocat carrier import-ipcc Carrier_iPhone.ipcc
```
确认警告和匹配范围后,使用 `--install` 安装;重启 VoCat 后生效:
```bash
vocat carrier import-ipcc --install Carrier_iPhone.ipcc
```
导入器不会复制关闭证书验证、绕过运营商授权、APN 凭据、紧急呼叫或
设备型号专属媒体参数。完整字段和冲突处理说明见
[CARRIER_IPCC_IMPORT.md](CARRIER_IPCC_IMPORT.md)。
## Telegram 机器人 ## Telegram 机器人
启用 Telegram 通知并配置好 Chat ID 与 Admin ID 后,机器人支持: 启用 Telegram 通知并配置好 Chat ID 与 Admin ID 后,机器人支持:
-4
View File
@@ -4,12 +4,10 @@ go 1.25.0
require ( require (
github.com/coder/websocket v1.8.15 github.com/coder/websocket v1.8.15
github.com/iniwex5/quectel-qmi-go v0.6.0
go.bug.st/serial v1.6.4 go.bug.st/serial v1.6.4
golang.org/x/crypto v0.52.0 golang.org/x/crypto v0.52.0
golang.org/x/sys v0.47.0 golang.org/x/sys v0.47.0
golang.org/x/term v0.43.0 golang.org/x/term v0.43.0
howett.net/plist v1.0.1
modernc.org/sqlite v1.38.2 modernc.org/sqlite v1.38.2
) )
@@ -20,8 +18,6 @@ require (
github.com/mattn/go-isatty v0.0.20 // indirect github.com/mattn/go-isatty v0.0.20 // indirect
github.com/ncruces/go-strftime v0.1.9 // indirect github.com/ncruces/go-strftime v0.1.9 // indirect
github.com/remyoudompheng/bigfft v0.0.0-20230129092748-24d4a6f8daec // indirect github.com/remyoudompheng/bigfft v0.0.0-20230129092748-24d4a6f8daec // indirect
github.com/stretchr/testify v1.10.0 // indirect
github.com/warthog618/sms v0.3.0 // indirect
golang.org/x/exp v0.0.0-20250620022241-b7579e27df2b // indirect golang.org/x/exp v0.0.0-20250620022241-b7579e27df2b // indirect
modernc.org/libc v1.66.3 // indirect modernc.org/libc v1.66.3 // indirect
modernc.org/mathutil v1.7.1 // indirect modernc.org/mathutil v1.7.1 // indirect
-18
View File
@@ -2,7 +2,6 @@ github.com/coder/websocket v1.8.15 h1:6B2JPeOGlpff2Uz6vOEH1Vzpi0iUz20A+lPVhPHtNU
github.com/coder/websocket v1.8.15/go.mod h1:NX3SzP+inril6yawo5CQXx8+fk145lPDC6pumgx0mVg= github.com/coder/websocket v1.8.15/go.mod h1:NX3SzP+inril6yawo5CQXx8+fk145lPDC6pumgx0mVg=
github.com/creack/goselect v0.1.2 h1:2DNy14+JPjRBgPzAd1thbQp4BSIihxcBf0IXhQXDRa0= github.com/creack/goselect v0.1.2 h1:2DNy14+JPjRBgPzAd1thbQp4BSIihxcBf0IXhQXDRa0=
github.com/creack/goselect v0.1.2/go.mod h1:a/NhLweNvqIYMuxcMOuWY516Cimucms3DglDzQP3hKY= github.com/creack/goselect v0.1.2/go.mod h1:a/NhLweNvqIYMuxcMOuWY516Cimucms3DglDzQP3hKY=
github.com/davecgh/go-spew v1.1.0/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
github.com/davecgh/go-spew v1.1.1 h1:vj9j/u1bqnvCEfJOwUhtlOARqs3+rkHYY13jYWTU97c= github.com/davecgh/go-spew v1.1.1 h1:vj9j/u1bqnvCEfJOwUhtlOARqs3+rkHYY13jYWTU97c=
github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38= github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSsI+c5H38=
github.com/dustin/go-humanize v1.0.1 h1:GzkhY7T5VNhEkwH0PVJgjz+fX1rhBrR7pRT3mDkpeCY= github.com/dustin/go-humanize v1.0.1 h1:GzkhY7T5VNhEkwH0PVJgjz+fX1rhBrR7pRT3mDkpeCY=
@@ -11,26 +10,16 @@ github.com/google/pprof v0.0.0-20250317173921-a4b03ec1a45e h1:ijClszYn+mADRFY17k
github.com/google/pprof v0.0.0-20250317173921-a4b03ec1a45e/go.mod h1:boTsfXsheKC2y+lKOCMpSfarhxDeIzfZG1jqGcPl3cA= github.com/google/pprof v0.0.0-20250317173921-a4b03ec1a45e/go.mod h1:boTsfXsheKC2y+lKOCMpSfarhxDeIzfZG1jqGcPl3cA=
github.com/google/uuid v1.6.0 h1:NIvaJDMOsjHA8n1jAhLSgzrAzy1Hgr+hNrb57e+94F0= github.com/google/uuid v1.6.0 h1:NIvaJDMOsjHA8n1jAhLSgzrAzy1Hgr+hNrb57e+94F0=
github.com/google/uuid v1.6.0/go.mod h1:TIyPZe4MgqvfeYDBFedMoGGpEw/LqOeaOT+nhxU+yHo= github.com/google/uuid v1.6.0/go.mod h1:TIyPZe4MgqvfeYDBFedMoGGpEw/LqOeaOT+nhxU+yHo=
github.com/iniwex5/quectel-qmi-go v0.6.0 h1:zWZc9jeNMy7+USFRBbfdShnjzSryyYnCw7NPw4ubaIg=
github.com/iniwex5/quectel-qmi-go v0.6.0/go.mod h1:6AlSY+Yj4MqJOsZ8cNrq99AzT9MlaopADnJtSRiyAfE=
github.com/jessevdk/go-flags v1.4.0/go.mod h1:4FA24M0QyGHXBuZZK/XkWh8h0e1EYbRYJSGM75WSRxI=
github.com/kr/pty v1.1.1/go.mod h1:pFQYn66WHrOpPYNljwOMqo10TkYh1fy3cYio2l3bCsQ=
github.com/kr/text v0.1.0/go.mod h1:4Jbv+DJW3UT/LiOwJeYQe1efqtUx/iVham/4vfdArNI=
github.com/mattn/go-isatty v0.0.20 h1:xfD0iDuEKnDkl03q4limB+vH+GxLEtL/jb4xVJSWWEY= github.com/mattn/go-isatty v0.0.20 h1:xfD0iDuEKnDkl03q4limB+vH+GxLEtL/jb4xVJSWWEY=
github.com/mattn/go-isatty v0.0.20/go.mod h1:W+V8PltTTMOvKvAeJH7IuucS94S2C6jfK/D7dTCTo3Y= github.com/mattn/go-isatty v0.0.20/go.mod h1:W+V8PltTTMOvKvAeJH7IuucS94S2C6jfK/D7dTCTo3Y=
github.com/ncruces/go-strftime v0.1.9 h1:bY0MQC28UADQmHmaF5dgpLmImcShSi2kHU9XLdhx/f4= github.com/ncruces/go-strftime v0.1.9 h1:bY0MQC28UADQmHmaF5dgpLmImcShSi2kHU9XLdhx/f4=
github.com/ncruces/go-strftime v0.1.9/go.mod h1:Fwc5htZGVVkseilnfgOVb9mKy6w1naJmn9CehxcKcls= github.com/ncruces/go-strftime v0.1.9/go.mod h1:Fwc5htZGVVkseilnfgOVb9mKy6w1naJmn9CehxcKcls=
github.com/niemeyer/pretty v0.0.0-20200227124842-a10e7caefd8e/go.mod h1:zD1mROLANZcx1PVRCS0qkT7pwLkGfwJo4zjcN/Tysno=
github.com/pmezard/go-difflib v1.0.0 h1:4DBwDE0NGyQoBHbLQYPwSUPoCMWR5BEzIk/f1lZbAQM= github.com/pmezard/go-difflib v1.0.0 h1:4DBwDE0NGyQoBHbLQYPwSUPoCMWR5BEzIk/f1lZbAQM=
github.com/pmezard/go-difflib v1.0.0/go.mod h1:iKH77koFhYxTK1pcRnkKkqfTogsbg7gZNVY4sRDYZ/4= github.com/pmezard/go-difflib v1.0.0/go.mod h1:iKH77koFhYxTK1pcRnkKkqfTogsbg7gZNVY4sRDYZ/4=
github.com/remyoudompheng/bigfft v0.0.0-20230129092748-24d4a6f8daec h1:W09IVJc94icq4NjY3clb7Lk8O1qJ8BdBEF8z0ibU0rE= github.com/remyoudompheng/bigfft v0.0.0-20230129092748-24d4a6f8daec h1:W09IVJc94icq4NjY3clb7Lk8O1qJ8BdBEF8z0ibU0rE=
github.com/remyoudompheng/bigfft v0.0.0-20230129092748-24d4a6f8daec/go.mod h1:qqbHyh8v60DhA7CoWK5oRCqLrMHRGoxYCSS9EjAz6Eo= github.com/remyoudompheng/bigfft v0.0.0-20230129092748-24d4a6f8daec/go.mod h1:qqbHyh8v60DhA7CoWK5oRCqLrMHRGoxYCSS9EjAz6Eo=
github.com/stretchr/objx v0.1.0/go.mod h1:HFkY916IF+rwdDfMAkV7OtwuqBVzrE8GR6GFx+wExME=
github.com/stretchr/testify v1.4.0/go.mod h1:j7eGeouHqKxXV5pUuKE4zz7dFj8WfuZ+81PSLYec5m4=
github.com/stretchr/testify v1.10.0 h1:Xv5erBjTwe/5IxqUQTdXv5kgmIvbHo3QQyRwhJsOfJA= github.com/stretchr/testify v1.10.0 h1:Xv5erBjTwe/5IxqUQTdXv5kgmIvbHo3QQyRwhJsOfJA=
github.com/stretchr/testify v1.10.0/go.mod h1:r2ic/lqez/lEtzL7wO/rwa5dbSLXVDPFyf8C91i36aY= github.com/stretchr/testify v1.10.0/go.mod h1:r2ic/lqez/lEtzL7wO/rwa5dbSLXVDPFyf8C91i36aY=
github.com/warthog618/sms v0.3.0 h1:LYAb5ngmu2qjNExgji3B7xi2tIZ9+DsuE9pC5xs4wwc=
github.com/warthog618/sms v0.3.0/go.mod h1:+bYZGeBxu003sxD5xhzsrIPBAjPBzTABsRTwSpd7ld4=
go.bug.st/serial v1.6.4 h1:7FmqNPgVp3pu2Jz5PoPtbZ9jJO5gnEnZIvnI1lzve8A= go.bug.st/serial v1.6.4 h1:7FmqNPgVp3pu2Jz5PoPtbZ9jJO5gnEnZIvnI1lzve8A=
go.bug.st/serial v1.6.4/go.mod h1:nofMJxTeNVny/m6+KaafC6vJGj3miwQZ6vW4BZUGJPI= go.bug.st/serial v1.6.4/go.mod h1:nofMJxTeNVny/m6+KaafC6vJGj3miwQZ6vW4BZUGJPI=
golang.org/x/crypto v0.52.0 h1:RMs7fP2rXdep0CftQlK8Uf+kibLm7qkCcradZWYz988= golang.org/x/crypto v0.52.0 h1:RMs7fP2rXdep0CftQlK8Uf+kibLm7qkCcradZWYz988=
@@ -48,15 +37,8 @@ golang.org/x/term v0.43.0 h1:S4RLU2sB31O/NCl+zFN9Aru9A/Cq2aqKpTZJ6B+DwT4=
golang.org/x/term v0.43.0/go.mod h1:lrhlHNdQJHO+1qVYiHfFKVuVioJIheAc3fBSMFYEIsk= golang.org/x/term v0.43.0/go.mod h1:lrhlHNdQJHO+1qVYiHfFKVuVioJIheAc3fBSMFYEIsk=
golang.org/x/tools v0.34.0 h1:qIpSLOxeCYGg9TrcJokLBG4KFA6d795g0xkBkiESGlo= golang.org/x/tools v0.34.0 h1:qIpSLOxeCYGg9TrcJokLBG4KFA6d795g0xkBkiESGlo=
golang.org/x/tools v0.34.0/go.mod h1:pAP9OwEaY1CAW3HOmg3hLZC5Z0CCmzjAF2UQMSqNARg= golang.org/x/tools v0.34.0/go.mod h1:pAP9OwEaY1CAW3HOmg3hLZC5Z0CCmzjAF2UQMSqNARg=
gopkg.in/check.v1 v0.0.0-20161208181325-20d25e280405/go.mod h1:Co6ibVJAznAaIkqp8huTwlJQCZ016jof/cbN4VW5Yz0=
gopkg.in/check.v1 v1.0.0-20200227125254-8fa46927fb4f/go.mod h1:Co6ibVJAznAaIkqp8huTwlJQCZ016jof/cbN4VW5Yz0=
gopkg.in/yaml.v1 v1.0.0-20140924161607-9f9df34309c0/go.mod h1:WDnlLJ4WF5VGsH/HVa3CI79GS0ol3YnhVnKP89i0kNg=
gopkg.in/yaml.v2 v2.2.2/go.mod h1:hI93XBmqTisBFMUTm0b8Fm+jr3Dg1NNxqwp+5A1VGuI=
gopkg.in/yaml.v2 v2.2.8/go.mod h1:hI93XBmqTisBFMUTm0b8Fm+jr3Dg1NNxqwp+5A1VGuI=
gopkg.in/yaml.v3 v3.0.1 h1:fxVm/GzAzEWqLHuvctI91KS9hhNmmWOoWu0XTYJS7CA= gopkg.in/yaml.v3 v3.0.1 h1:fxVm/GzAzEWqLHuvctI91KS9hhNmmWOoWu0XTYJS7CA=
gopkg.in/yaml.v3 v3.0.1/go.mod h1:K4uyk7z7BCEPqu6E+C64Yfv1cQ7kz7rIZviUmN+EgEM= gopkg.in/yaml.v3 v3.0.1/go.mod h1:K4uyk7z7BCEPqu6E+C64Yfv1cQ7kz7rIZviUmN+EgEM=
howett.net/plist v1.0.1 h1:37GdZ8tP09Q35o9ych3ehygcsL+HqKSwzctveSlarvM=
howett.net/plist v1.0.1/go.mod h1:lqaXoTrLY4hg8tnEzNru53gicrbv7rrk+2xJA/7hw9g=
modernc.org/cc/v4 v4.26.2 h1:991HMkLjJzYBIfha6ECZdjrIYz2/1ayr+FL8GN+CNzM= modernc.org/cc/v4 v4.26.2 h1:991HMkLjJzYBIfha6ECZdjrIYz2/1ayr+FL8GN+CNzM=
modernc.org/cc/v4 v4.26.2/go.mod h1:uVtb5OGqUKpoLWhqwNQo/8LwvoiEBLvZXIQ/SmO6mL0= modernc.org/cc/v4 v4.26.2/go.mod h1:uVtb5OGqUKpoLWhqwNQo/8LwvoiEBLvZXIQ/SmO6mL0=
modernc.org/ccgo/v4 v4.28.0 h1:rjznn6WWehKq7dG4JtLRKxb52Ecv8OUGah8+Z/SfpNU= modernc.org/ccgo/v4 v4.28.0 h1:rjznn6WWehKq7dG4JtLRKxb52Ecv8OUGah8+Z/SfpNU=
+12 -48
View File
@@ -1,7 +1,6 @@
package auth package auth
import ( import (
"bytes"
"context" "context"
"crypto/rand" "crypto/rand"
"crypto/sha256" "crypto/sha256"
@@ -21,13 +20,8 @@ var (
ErrInvalidCredentials = errors.New("invalid credentials") ErrInvalidCredentials = errors.New("invalid credentials")
ErrUnauthorized = errors.New("unauthorized") ErrUnauthorized = errors.New("unauthorized")
ErrInvalidCSRF = errors.New("invalid csrf token") ErrInvalidCSRF = errors.New("invalid csrf token")
ErrEmptyPassword = errors.New("password cannot be empty")
) )
const bcryptPasswordLimit = 72
var longPasswordHashPrefix = []byte("$vocat-sha256$")
type Options struct { type Options struct {
SessionTTL time.Duration SessionTTL time.Duration
BcryptCost int BcryptCost int
@@ -91,14 +85,14 @@ func (s *Service) EnsureAdmin(ctx context.Context, username string, password str
current, err := s.store.CurrentAdmin(ctx) current, err := s.store.CurrentAdmin(ctx)
if err == nil && if err == nil &&
current.Username == username && current.Username == username &&
comparePassword(current.PasswordHash, password) == nil { bcrypt.CompareHashAndPassword(current.PasswordHash, []byte(password)) == nil {
return nil return nil
} }
if err != nil && !errors.Is(err, store.ErrNotFound) { if err != nil && !errors.Is(err, store.ErrNotFound) {
return fmt.Errorf("auth: read configured admin: %w", err) return fmt.Errorf("auth: read configured admin: %w", err)
} }
passwordHash, err := hashPassword(password, s.bcryptCost) passwordHash, err := bcrypt.GenerateFromPassword([]byte(password), s.bcryptCost)
if err != nil { if err != nil {
return fmt.Errorf("auth: hash admin password: %w", err) return fmt.Errorf("auth: hash admin password: %w", err)
} }
@@ -133,8 +127,8 @@ func (s *Service) ResetAdminCredentials(ctx context.Context, username string, pa
if len(username) < 1 || len(username) > 64 || strings.ContainsAny(username, "\r\n\t") { if len(username) < 1 || len(username) > 64 || strings.ContainsAny(username, "\r\n\t") {
return errors.New("administrator username must contain between 1 and 64 characters without control whitespace") return errors.New("administrator username must contain between 1 and 64 characters without control whitespace")
} }
if password == "" { if len(password) < 12 || len(password) > 1024 {
return ErrEmptyPassword return errors.New("administrator password must contain between 12 and 1024 characters")
} }
if err := s.EnsureAdmin(ctx, username, password); err != nil { if err := s.EnsureAdmin(ctx, username, password); err != nil {
return fmt.Errorf("auth: reset administrator credentials: %w", err) return fmt.Errorf("auth: reset administrator credentials: %w", err)
@@ -145,13 +139,13 @@ func (s *Service) ResetAdminCredentials(ctx context.Context, username string, pa
func (s *Service) Login(ctx context.Context, username string, password string) (Credentials, error) { func (s *Service) Login(ctx context.Context, username string, password string) (Credentials, error) {
admin, err := s.store.AdminByUsername(ctx, strings.TrimSpace(username)) admin, err := s.store.AdminByUsername(ctx, strings.TrimSpace(username))
if errors.Is(err, store.ErrNotFound) { if errors.Is(err, store.ErrNotFound) {
_ = comparePassword(s.dummyHash, password) _ = bcrypt.CompareHashAndPassword(s.dummyHash, []byte(password))
return Credentials{}, ErrInvalidCredentials return Credentials{}, ErrInvalidCredentials
} }
if err != nil { if err != nil {
return Credentials{}, fmt.Errorf("auth: find admin: %w", err) return Credentials{}, fmt.Errorf("auth: find admin: %w", err)
} }
if comparePassword(admin.PasswordHash, password) != nil { if bcrypt.CompareHashAndPassword(admin.PasswordHash, []byte(password)) != nil {
return Credentials{}, ErrInvalidCredentials return Credentials{}, ErrInvalidCredentials
} }
@@ -290,24 +284,24 @@ func (s *Service) ChangePassword(
currentPassword string, currentPassword string,
newPassword string, newPassword string,
) error { ) error {
if newPassword == "" { if len(newPassword) < 12 || len(newPassword) > 1024 {
return ErrEmptyPassword return errors.New("new password must contain between 12 and 1024 characters")
} }
admin, err := s.store.AdminByUsername(ctx, strings.TrimSpace(username)) admin, err := s.store.AdminByUsername(ctx, strings.TrimSpace(username))
if errors.Is(err, store.ErrNotFound) { if errors.Is(err, store.ErrNotFound) {
_ = comparePassword(s.dummyHash, currentPassword) _ = bcrypt.CompareHashAndPassword(s.dummyHash, []byte(currentPassword))
return ErrInvalidCredentials return ErrInvalidCredentials
} }
if err != nil { if err != nil {
return fmt.Errorf("auth: find admin: %w", err) return fmt.Errorf("auth: find admin: %w", err)
} }
if comparePassword(admin.PasswordHash, currentPassword) != nil { if bcrypt.CompareHashAndPassword(admin.PasswordHash, []byte(currentPassword)) != nil {
return ErrInvalidCredentials return ErrInvalidCredentials
} }
if comparePassword(admin.PasswordHash, newPassword) == nil { if bcrypt.CompareHashAndPassword(admin.PasswordHash, []byte(newPassword)) == nil {
return errors.New("new password must differ from the current password") return errors.New("new password must differ from the current password")
} }
passwordHash, err := hashPassword(newPassword, s.bcryptCost) passwordHash, err := bcrypt.GenerateFromPassword([]byte(newPassword), s.bcryptCost)
if err != nil { if err != nil {
return fmt.Errorf("auth: hash new password: %w", err) return fmt.Errorf("auth: hash new password: %w", err)
} }
@@ -317,36 +311,6 @@ func (s *Service) ChangePassword(
return nil return nil
} }
// hashPassword keeps ordinary bcrypt hashes compatible with existing
// installations. bcrypt rejects inputs longer than 72 bytes, so only longer
// passwords use a tagged SHA-256 pre-hash before bcrypt.
func hashPassword(password string, cost int) ([]byte, error) {
material := []byte(password)
longPassword := len(material) > bcryptPasswordLimit
if longPassword {
digest := sha256.Sum256(material)
material = digest[:]
}
passwordHash, err := bcrypt.GenerateFromPassword(material, cost)
if err != nil {
return nil, err
}
if !longPassword {
return passwordHash, nil
}
return append(append([]byte(nil), longPasswordHashPrefix...), passwordHash...), nil
}
func comparePassword(passwordHash []byte, password string) error {
material := []byte(password)
if bytes.HasPrefix(passwordHash, longPasswordHashPrefix) {
digest := sha256.Sum256(material)
material = digest[:]
passwordHash = passwordHash[len(longPasswordHashPrefix):]
}
return bcrypt.CompareHashAndPassword(passwordHash, material)
}
func randomToken() (string, error) { func randomToken() (string, error) {
buffer := make([]byte, 32) buffer := make([]byte, 32)
if _, err := rand.Read(buffer); err != nil { if _, err := rand.Read(buffer); err != nil {
+1 -28
View File
@@ -3,7 +3,6 @@ package auth
import ( import (
"context" "context"
"errors" "errors"
"strings"
"testing" "testing"
"time" "time"
@@ -129,7 +128,7 @@ func TestResetAdminCredentialsValidatesInput(t *testing.T) {
}{ }{
{name: "empty username", password: "replacement-password"}, {name: "empty username", password: "replacement-password"},
{name: "control whitespace", username: "bad\tname", password: "replacement-password"}, {name: "control whitespace", username: "bad\tname", password: "replacement-password"},
{name: "empty password", username: "admin", password: ""}, {name: "short password", username: "admin", password: "short"},
} { } {
t.Run(test.name, func(t *testing.T) { t.Run(test.name, func(t *testing.T) {
if err := service.ResetAdminCredentials(context.Background(), test.username, test.password); err == nil { if err := service.ResetAdminCredentials(context.Background(), test.username, test.password); err == nil {
@@ -139,32 +138,6 @@ func TestResetAdminCredentialsValidatesInput(t *testing.T) {
} }
} }
func TestResetAdminCredentialsAcceptsPasswordsWithoutComplexityRules(t *testing.T) {
ctx := context.Background()
for _, password := range []string{"1", strings.Repeat("x", 256)} {
service := newTestService(t)
if err := service.ResetAdminCredentials(ctx, "admin", password); err != nil {
t.Fatalf("ResetAdminCredentials(%d-byte password) error = %v", len(password), err)
}
if _, err := service.Login(ctx, "admin", password); err != nil {
t.Fatalf("Login(%d-byte password) error = %v", len(password), err)
}
}
}
func TestChangePasswordAcceptsPasswordsWithoutComplexityRules(t *testing.T) {
ctx := context.Background()
for _, password := range []string{"1", strings.Repeat("long-password-", 32)} {
service := newTestService(t)
if err := service.ChangePassword(ctx, "admin", "correct-password", password); err != nil {
t.Fatalf("ChangePassword(%d-byte password) error = %v", len(password), err)
}
if _, err := service.Login(ctx, "admin", password); err != nil {
t.Fatalf("Login(%d-byte password) error = %v", len(password), err)
}
}
}
func TestEnsureAdminIfMissingDoesNotOverwriteChangedPassword(t *testing.T) { func TestEnsureAdminIfMissingDoesNotOverwriteChangedPassword(t *testing.T) {
ctx := context.Background() ctx := context.Background()
service := newTestService(t) service := newTestService(t)
+1 -21
View File
@@ -3,7 +3,6 @@ package device
import ( import (
_ "embed" _ "embed"
"encoding/json" "encoding/json"
"sort"
"strings" "strings"
) )
@@ -52,25 +51,6 @@ func CountryForMCC(mcc string) (string, bool) {
return country, len(country) == 2 return country, len(country) == 2
} }
// MCCsByCountry returns the complete MCC grouping from the embedded carrier
// database, keyed by ISO alpha-2 country/territory code. The returned map and
// slices are new values and may be safely modified by callers.
func MCCsByCountry() map[string][]string {
result := make(map[string][]string)
for mcc, rawCountry := range globalCarrierDatabase.Countries {
country := strings.ToUpper(strings.TrimSpace(rawCountry))
mcc = strings.TrimSpace(mcc)
if len(country) != 2 || len(mcc) != 3 {
continue
}
result[country] = append(result[country], mcc)
}
for country := range result {
sort.Strings(result[country])
}
return result
}
var globalCarrierDatabase = func() carrierDatabase { var globalCarrierDatabase = func() carrierDatabase {
var database carrierDatabase var database carrierDatabase
if err := json.Unmarshal(carrierDatabaseJSON, &database); err != nil { if err := json.Unmarshal(carrierDatabaseJSON, &database); err != nil {
@@ -124,7 +104,7 @@ func CarrierForIMSI(imsi string) (plmn, name, countryCode string, ok bool) {
// several customer-facing carriers authenticate through the same home PLMN. // several customer-facing carriers authenticate through the same home PLMN.
func CarrierForSIM(identity CarrierIdentity) (plmn, name, countryCode string, ok bool) { func CarrierForSIM(identity CarrierIdentity) (plmn, name, countryCode string, ok bool) {
imsi := strings.TrimSpace(identity.IMSI) imsi := strings.TrimSpace(identity.IMSI)
if !decimalDigits(imsi, 5, 20) || IsPlaceholderIMSI(imsi) { if !decimalDigits(imsi, 5, 20) {
return "", "", "", false return "", "", "", false
} }
plmns := carrierPLMNCandidates(imsi, identity.MNCLength) plmns := carrierPLMNCandidates(imsi, identity.MNCLength)
-4
View File
@@ -277,10 +277,6 @@ func (manager *Manager) SetFlight(
if manager.candidateFor(state).HardwareKind == "pcsc" { if manager.candidateFor(state).HardwareKind == "pcsc" {
return FlightResult{PreviousMode: 4, CurrentMode: 4, FlightMode: true, RadioOff: true}, nil return FlightResult{PreviousMode: 4, CurrentMode: 4, FlightMode: true, RadioOff: true}, nil
} }
if result, handled, err := manager.setNativeQMIFlight(ctx, id, state, enabled); handled {
manager.setResult(id, state, nil, err)
return result, err
}
client, err := manager.clientLocked(ctx, state, manager.candidateFor(state)) client, err := manager.clientLocked(ctx, state, manager.candidateFor(state))
if err != nil { if err != nil {
manager.setResult(id, state, nil, err) manager.setResult(id, state, nil, err)
-200
View File
@@ -2,209 +2,9 @@ package device
import ( import (
"context" "context"
"errors"
"testing" "testing"
"github.com/iniwex5/quectel-qmi-go/pkg/qmi"
"vocat/internal/modem"
) )
type fakeQMIRadioSession struct {
mode qmi.OperatingMode
getModes []qmi.OperatingMode
setModes []qmi.OperatingMode
getErr error
setErr error
closeCount int
iccid string
iccidErr error
imei string
imeiErr error
openedAIDs [][]byte
openChannel byte
openErr error
closedChannels []byte
apdus [][]byte
apduResponse []byte
apduErr error
}
func (session *fakeQMIRadioSession) GetOperatingMode(context.Context) (qmi.OperatingMode, error) {
if len(session.getModes) > 0 {
mode := session.getModes[0]
session.getModes = session.getModes[1:]
return mode, session.getErr
}
return session.mode, session.getErr
}
func (session *fakeQMIRadioSession) SetOperatingMode(_ context.Context, mode qmi.OperatingMode) error {
if session.setErr != nil {
return session.setErr
}
session.setModes = append(session.setModes, mode)
session.mode = mode
return nil
}
func (session *fakeQMIRadioSession) Close() error {
session.closeCount++
return nil
}
func (session *fakeQMIRadioSession) GetICCID(context.Context) (string, error) {
return session.iccid, session.iccidErr
}
func (session *fakeQMIRadioSession) GetIMEI(context.Context) (string, error) {
return session.imei, session.imeiErr
}
func (session *fakeQMIRadioSession) OpenLogicalChannel(_ context.Context, _ uint8, aid []byte) (byte, error) {
session.openedAIDs = append(session.openedAIDs, append([]byte(nil), aid...))
if session.openErr != nil {
return 0, session.openErr
}
if session.openChannel == 0 {
return 1, nil
}
return session.openChannel, nil
}
func (session *fakeQMIRadioSession) CloseLogicalChannel(_ context.Context, _ uint8, channel uint8) error {
session.closedChannels = append(session.closedChannels, channel)
return nil
}
func (session *fakeQMIRadioSession) SendAPDU(_ context.Context, _ uint8, _ uint8, command []byte) ([]byte, error) {
session.apdus = append(session.apdus, append([]byte(nil), command...))
return append([]byte(nil), session.apduResponse...), session.apduErr
}
func newStartedNativeQMITestManager(t *testing.T) (*Manager, *staticOpener, string) {
t.Helper()
const id = "wwan0"
opener := &staticOpener{client: &transcriptClient{}}
manager, err := NewManager(Options{
Discoverer: staticDiscoverer{candidates: []modem.Candidate{{
ID: id,
Product: "410 WiFi stick",
QMIControl: "/dev/wwan0qmi0",
NetworkInterface: "wwan0",
ATPort: modem.Port{
Path: "/dev/wwan0at0",
Name: "wwan0at0",
Role: modem.PortRoleAT,
},
}}},
Opener: opener,
})
if err != nil {
t.Fatalf("NewManager: %v", err)
}
if err := manager.Start(context.Background()); err != nil {
t.Fatalf("Start: %v", err)
}
manager.mu.Lock()
manager.devices[id].snapshot = &Snapshot{
DeviceID: id,
OperatingMode: 7,
ModeKnown: true,
FlightMode: true,
RadioOff: true,
}
manager.mu.Unlock()
t.Cleanup(func() { _ = manager.Stop(context.Background()) })
return manager, opener, id
}
func TestSetFlightUsesQMIDMSForNativeWWAN(t *testing.T) {
manager, atOpener, id := newStartedNativeQMITestManager(t)
session := &fakeQMIRadioSession{mode: qmi.ModeOffline}
var openedPath string
manager.qmiRadioOpener = func(_ context.Context, path string) (qmiRadioSession, error) {
openedPath = path
return session, nil
}
disabled, err := manager.SetFlight(context.Background(), id, false)
if err != nil {
t.Fatalf("disable flight mode: %v", err)
}
if !disabled.Changed || disabled.PreviousMode != 7 || disabled.CurrentMode != 1 ||
disabled.FlightMode || disabled.RadioOff {
t.Fatalf("disable result = %#v", disabled)
}
enabled, err := manager.SetFlight(context.Background(), id, true)
if err != nil {
t.Fatalf("enable flight mode: %v", err)
}
if !enabled.Changed || enabled.PreviousMode != 1 || enabled.CurrentMode != 0 ||
!enabled.FlightMode || !enabled.RadioOff {
t.Fatalf("enable result = %#v", enabled)
}
if openedPath != "/dev/wwan0qmi0" {
t.Fatalf("QMI path = %q", openedPath)
}
if len(session.setModes) != 2 || session.setModes[0] != qmi.ModeOnline || session.setModes[1] != qmi.ModeLowPower {
t.Fatalf("QMI modes = %v", session.setModes)
}
if session.closeCount != 2 {
t.Fatalf("QMI close count = %d", session.closeCount)
}
if atOpener.openCount != 0 {
t.Fatalf("AT opener used %d times for native QMI flight mode", atOpener.openCount)
}
entry, err := manager.Get(id)
if err != nil {
t.Fatal(err)
}
if entry.Snapshot == nil || entry.Snapshot.OperatingMode != 0 || !entry.Snapshot.FlightMode {
t.Fatalf("snapshot = %#v", entry.Snapshot)
}
}
func TestSetFlightDoesNotFallBackToUnsupportedATWhenQMIUnavailable(t *testing.T) {
manager, atOpener, id := newStartedNativeQMITestManager(t)
wantErr := errors.New("QMI DMS unavailable")
manager.qmiRadioOpener = func(context.Context, string) (qmiRadioSession, error) {
return nil, wantErr
}
if _, err := manager.SetFlight(context.Background(), id, false); !errors.Is(err, wantErr) {
t.Fatalf("SetFlight error = %v, want %v", err, wantErr)
}
if atOpener.openCount != 0 {
t.Fatalf("AT opener used %d times after QMI failure", atOpener.openCount)
}
}
func TestSetFlightWaitsForAsynchronousQMIModeTransition(t *testing.T) {
manager, atOpener, id := newStartedNativeQMITestManager(t)
session := &fakeQMIRadioSession{
mode: qmi.ModeShutdown,
getModes: []qmi.OperatingMode{qmi.ModeShutdown, qmi.ModeShutdown, qmi.ModeOnline},
}
manager.qmiRadioOpener = func(context.Context, string) (qmiRadioSession, error) {
return session, nil
}
result, err := manager.SetFlight(context.Background(), id, false)
if err != nil {
t.Fatalf("disable flight mode: %v", err)
}
if !result.Changed || result.PreviousMode != 7 || result.CurrentMode != 1 || result.FlightMode {
t.Fatalf("result = %#v", result)
}
if len(session.setModes) != 1 || session.setModes[0] != qmi.ModeOnline {
t.Fatalf("QMI modes = %v", session.setModes)
}
if atOpener.openCount != 0 {
t.Fatalf("AT opener used %d times during QMI transition", atOpener.openCount)
}
}
func TestSetFlightPreservesRawCFUNZero(t *testing.T) { func TestSetFlightPreservesRawCFUNZero(t *testing.T) {
client := &transcriptClient{steps: []clientStep{ client := &transcriptClient{steps: []clientStep{
{command: "AT+CFUN?", response: okResponse("+CFUN: 0")}, {command: "AT+CFUN?", response: okResponse("+CFUN: 0")},
-56
View File
@@ -99,31 +99,6 @@ func (manager *Manager) SetNetwork(
if candidate.QMIControl == "" || candidate.NetworkInterface == "" { if candidate.QMIControl == "" || candidate.NetworkInterface == "" {
return NetworkResult{}, fmt.Errorf("%w: QMI control device and network interface are required", ErrDataBackendUnavailable) return NetworkResult{}, fmt.Errorf("%w: QMI control device and network interface are required", ErrDataBackendUnavailable)
} }
// OpenStick's native WWAN path must drive registration through QMI NAS.
// AT+COPS only updates the legacy AT facade on this firmware and can leave
// NAS in not-registered-searching, which then makes qmi-network report a
// generic-no-service call failure.
if request.Enabled && isNativeQMICandidate(candidate) {
registrationContext, cancel := context.WithTimeout(ctx, manager.scanTimeout)
registrationSession, openErr := manager.openNativeQMIRegistration(registrationContext, candidate)
if openErr != nil {
cancel()
manager.setResult(id, state, nil, openErr)
return NetworkResult{}, fmt.Errorf("prepare native QMI registration: %w", openErr)
}
registrationErr := ensureNativeQMIRegistration(
registrationContext,
registrationSession,
qmiRegistrationRequestAutomatic(),
true,
)
_ = registrationSession.Close()
cancel()
if registrationErr != nil {
manager.setResult(id, state, nil, registrationErr)
return NetworkResult{}, registrationErr
}
}
result, err := setQMINetwork(ctx, candidate, request.Enabled, apn, ipVersion, request.Username, request.Password, authentication) result, err := setQMINetwork(ctx, candidate, request.Enabled, apn, ipVersion, request.Username, request.Password, authentication)
if err != nil && (request.Username != "" || request.Password != "") { if err != nil && (request.Username != "" || request.Password != "") {
// qmi-network output is outside our control and may echo values read // qmi-network output is outside our control and may echo values read
@@ -297,19 +272,6 @@ func usbNetModeName(mode int) string {
} }
func (manager *Manager) OperatorSelection(ctx context.Context, id string) (OperatorSelection, error) { func (manager *Manager) OperatorSelection(ctx context.Context, id string) (OperatorSelection, error) {
state, err := manager.lookup(id)
if err != nil {
return OperatorSelection{}, err
}
candidate := manager.candidateFor(state)
if isNativeQMICandidate(candidate) {
state.opMu.Lock()
defer state.opMu.Unlock()
if err := manager.validateActive(id, state); err != nil {
return OperatorSelection{}, err
}
return manager.nativeQMIOperatorSelectionLocked(ctx, candidate)
}
response, err := manager.ExecuteAT(ctx, id, "AT+COPS?") response, err := manager.ExecuteAT(ctx, id, "AT+COPS?")
if err != nil { if err != nil {
return OperatorSelection{}, err return OperatorSelection{}, err
@@ -373,18 +335,6 @@ func (manager *Manager) SetOperatorSelection(
if err := manager.validateActive(id, state); err != nil { if err := manager.validateActive(id, state); err != nil {
return OperatorSelection{}, err return OperatorSelection{}, err
} }
candidate := manager.candidateFor(state)
if isNativeQMICandidate(candidate) {
selection, err := manager.setNativeQMIOperatorSelectionLocked(
ctx,
candidate,
automatic,
plmn,
accessTechnologyValue,
)
manager.setResult(id, state, nil, err)
return selection, err
}
client, err := manager.clientLocked(ctx, state, manager.candidateFor(state)) client, err := manager.clientLocked(ctx, state, manager.candidateFor(state))
if err != nil { if err != nil {
manager.setResult(id, state, nil, err) manager.setResult(id, state, nil, err)
@@ -485,12 +435,6 @@ func (manager *Manager) ReRegisterOperator(ctx context.Context, id string) (Oper
if err := manager.validateActive(id, state); err != nil { if err := manager.validateActive(id, state); err != nil {
return OperatorSelection{}, err return OperatorSelection{}, err
} }
candidate := manager.candidateFor(state)
if isNativeQMICandidate(candidate) {
selection, err := manager.reRegisterNativeQMIOperatorLocked(ctx, candidate)
manager.setResult(id, state, nil, err)
return selection, err
}
client, err := manager.clientLocked(ctx, state, manager.candidateFor(state)) client, err := manager.clientLocked(ctx, state, manager.candidateFor(state))
if err != nil { if err != nil {
manager.setResult(id, state, nil, err) manager.setResult(id, state, nil, err)
+8 -294
View File
@@ -8,8 +8,6 @@ import (
"strings" "strings"
"time" "time"
"github.com/iniwex5/quectel-qmi-go/pkg/qmi"
"vocat/internal/i18n" "vocat/internal/i18n"
"vocat/internal/modem" "vocat/internal/modem"
"vocat/internal/pcsc" "vocat/internal/pcsc"
@@ -161,20 +159,12 @@ func encodeICCID(digits string) ([]byte, error) {
} }
func buildEnableProfileRequest(iccid string) ([]byte, error) { func buildEnableProfileRequest(iccid string) ([]byte, error) {
return buildEnableProfileRequestWithRefresh(iccid, true)
}
func buildEnableProfileRequestWithRefresh(iccid string, refresh bool) ([]byte, error) {
bcd, err := encodeICCID(iccid) bcd, err := encodeICCID(iccid)
if err != nil { if err != nil {
return nil, err return nil, err
} }
profileID := derConstruct(0xA0, derEncode(0x5A, bcd)) profileID := derConstruct(0xA0, derEncode(0x5A, bcd))
refreshFlag := byte(0x00) return derConstruct(0xBF31, profileID, derEncode(0x81, []byte{0xFF})), nil
if refresh {
refreshFlag = 0xFF
}
return derConstruct(0xBF31, profileID, derEncode(0x81, []byte{refreshFlag})), nil
} }
// parseCSIM extracts the payload and status word from an AT+CSIM response. // parseCSIM extracts the payload and status word from an AT+CSIM response.
@@ -205,74 +195,9 @@ type euiccChannel struct {
id string id string
channel int channel int
pcscSession *pcsc.Session pcscSession *pcsc.Session
qmiSession nativeQMIEuiccSession
qmiSlot uint8
resetOnClose bool resetOnClose bool
} }
func (channel *euiccChannel) registerProfileRefresh(ctx context.Context) (bool, error) {
refreshSession, ok := channel.qmiSession.(nativeQMIRefreshSession)
if !ok {
return false, nil
}
if err := refreshSession.RegisterUIMRefresh(ctx); err != nil {
var unsupported *qmi.NotSupportedError
if errors.As(err, &unsupported) {
return false, nil
}
return false, err
}
return true, nil
}
func (channel *euiccChannel) completeProfileRefresh(ctx context.Context) error {
refreshSession, ok := channel.qmiSession.(nativeQMIRefreshSession)
if !ok {
return nil
}
return refreshSession.CompleteUIMRefresh(ctx)
}
func (channel *euiccChannel) acknowledgeProfileRefresh(ctx context.Context) error {
refreshSession, ok := channel.qmiSession.(nativeQMIRefreshSession)
if !ok {
return nil
}
return refreshSession.AcknowledgeUIMRefresh(ctx)
}
func (channel *euiccChannel) recoverCATBusy(ctx context.Context) error {
if channel.qmiSession == nil {
return nil
}
// A power cycle must happen while the CAT2 client remains registered, or
// the card can issue its first proactive command before VoCat is listening
// and immediately become busy again.
if channel.channel > 0 {
_ = channel.qmiSession.CloseLogicalChannel(ctx, channel.qmiSlot, byte(channel.channel))
channel.channel = 0
}
power, ok := channel.qmiSession.(interface {
PowerOffSIM(context.Context, uint8) error
PowerOnSIM(context.Context, uint8) error
})
if !ok {
return nil
}
if err := power.PowerOffSIM(ctx, channel.qmiSlot); err != nil {
return err
}
select {
case <-ctx.Done():
return ctx.Err()
case <-time.After(time.Second):
}
if err := power.PowerOnSIM(ctx, channel.qmiSlot); err != nil {
return err
}
return channel.completeProfileRefresh(ctx)
}
// csimAPDUTimeout bounds a single AT+CSIM exchange. Loading a BoundProfilePackage // csimAPDUTimeout bounds a single AT+CSIM exchange. Loading a BoundProfilePackage
// makes the eUICC decrypt/write sizeable SCP03t segments on-card, which can exceed // makes the eUICC decrypt/write sizeable SCP03t segments on-card, which can exceed
// the modem's default 3s command timeout, so eSIM APDUs get a longer budget. // the modem's default 3s command timeout, so eSIM APDUs get a longer budget.
@@ -364,9 +289,6 @@ func (manager *Manager) openEuiccOnceAID(ctx context.Context, id, aidHex string)
if candidate.HardwareKind == pcsc.HardwareKind { if candidate.HardwareKind == pcsc.HardwareKind {
return manager.openPCSCEuiccOnceAID(ctx, id, candidate, aidHex) return manager.openPCSCEuiccOnceAID(ctx, id, candidate, aidHex)
} }
if strings.EqualFold(manager.backendFor(state), "qmi") && isNativeQMICandidate(candidate) {
return manager.openQMIEuiccOnceAID(ctx, id, candidate, aidHex)
}
// MANAGE CHANNEL (open): 00 70 00 00 01 -> "<channel> 90 00". This EC20 // MANAGE CHANNEL (open): 00 70 00 00 01 -> "<channel> 90 00". This EC20
// firmware requires the explicit one-byte expected length: Le=00 opens a // firmware requires the explicit one-byte expected length: Le=00 opens a
// channel but then rejects SELECT ISD-R at the AT+CSIM layer. // channel but then rejects SELECT ISD-R at the AT+CSIM layer.
@@ -405,38 +327,6 @@ func (manager *Manager) openEuiccOnceAID(ctx context.Context, id, aidHex string)
return channel, nil return channel, nil
} }
func (manager *Manager) openQMIEuiccOnceAID(ctx context.Context, id string, candidate modem.Candidate, aidHex string) (*euiccChannel, error) {
aidHex = strings.ToUpper(strings.TrimSpace(aidHex))
aid, err := hex.DecodeString(aidHex)
if err != nil || len(aid) == 0 || len(aid) > 255 {
return nil, fmt.Errorf("esim: invalid ISD-R AID %q", aidHex)
}
if manager.qmiRadioOpener == nil {
return nil, errors.New("esim: QMI UIM transport is unavailable")
}
openContext, cancel := context.WithTimeout(ctx, csimAPDUTimeout)
defer cancel()
radioSession, err := manager.qmiRadioOpener(openContext, candidate.QMIControl)
if err != nil {
return nil, fmt.Errorf("esim: open QMI UIM transport: %w", err)
}
session, ok := radioSession.(nativeQMIEuiccSession)
if !ok {
_ = radioSession.Close()
return nil, errors.New("esim: QMI UIM transport does not support logical channels")
}
const slot uint8 = 1
logicalChannel, err := session.OpenLogicalChannel(openContext, slot, aid)
if err != nil {
_ = session.Close()
return nil, fmt.Errorf("%w: %v", errNoEUICC, err)
}
return &euiccChannel{
manager: manager, id: id, channel: int(logicalChannel),
qmiSession: session, qmiSlot: slot,
}, nil
}
func (manager *Manager) openPCSCEuiccOnceAID(ctx context.Context, id string, candidate modem.Candidate, aidHex string) (*euiccChannel, error) { func (manager *Manager) openPCSCEuiccOnceAID(ctx context.Context, id string, candidate modem.Candidate, aidHex string) (*euiccChannel, error) {
session, err := manager.cardReaders.OpenSession(ctx, pcsc.Selector{ session, err := manager.cardReaders.OpenSession(ctx, pcsc.Selector{
USBPath: candidate.USBPath, ReaderName: candidate.ReaderName, USBPath: candidate.USBPath, ReaderName: candidate.ReaderName,
@@ -517,14 +407,6 @@ func isTransientEuiccCME(err error) bool {
// close releases the logical channel (MANAGE CHANNEL close). // close releases the logical channel (MANAGE CHANNEL close).
func (channel *euiccChannel) close(ctx context.Context) { func (channel *euiccChannel) close(ctx context.Context) {
if channel.qmiSession != nil {
if channel.channel > 0 {
_ = channel.qmiSession.CloseLogicalChannel(ctx, channel.qmiSlot, byte(channel.channel))
}
_ = channel.qmiSession.Close()
channel.qmiSession = nil
return
}
closeAPDU := []byte{0x00, 0x70, 0x80, byte(channel.channel), 0x00} closeAPDU := []byte{0x00, 0x70, 0x80, byte(channel.channel), 0x00}
_, _, _ = channel.exchange(ctx, closeAPDU) _, _, _ = channel.exchange(ctx, closeAPDU)
if channel.pcscSession != nil { if channel.pcscSession != nil {
@@ -538,17 +420,6 @@ func (channel *euiccChannel) close(ctx context.Context) {
} }
func (channel *euiccChannel) exchange(ctx context.Context, apdu []byte) ([]byte, int, error) { func (channel *euiccChannel) exchange(ctx context.Context, apdu []byte) ([]byte, int, error) {
if channel.qmiSession != nil {
raw, err := channel.qmiSession.SendAPDU(ctx, channel.qmiSlot, byte(channel.channel), apdu)
if err != nil {
return nil, 0, err
}
if len(raw) < 2 {
return nil, 0, fmt.Errorf("esim: short QMI UIM APDU response")
}
sw := int(raw[len(raw)-2])<<8 | int(raw[len(raw)-1])
return raw[:len(raw)-2], sw, nil
}
if channel.pcscSession != nil { if channel.pcscSession != nil {
payload, sw, err := channel.pcscSession.Transmit(ctx, apdu) payload, sw, err := channel.pcscSession.Transmit(ctx, apdu)
return payload, int(sw), err return payload, int(sw), err
@@ -781,9 +652,9 @@ func (manager *Manager) ESIMSwitchProfile(ctx context.Context, id string, iccid
if iccid == "" { if iccid == "" {
return errors.New("esim: an ICCID is required") return errors.New("esim: an ICCID is required")
} }
_, nativeQMI, nativeErr := manager.nativeQMIControl(id) der, err := buildEnableProfileRequest(iccid)
if nativeErr != nil { if err != nil {
return nativeErr return err
} }
manager.lockESIM() manager.lockESIM()
if err := manager.waitForESIMRecovery(ctx, id); err != nil { if err := manager.waitForESIMRecovery(ctx, id); err != nil {
@@ -795,31 +666,6 @@ func (manager *Manager) ESIMSwitchProfile(ctx context.Context, id string, iccid
manager.unlockESIM() manager.unlockESIM()
return err return err
} }
refreshRequested := !nativeQMI
if nativeQMI {
refreshContext, cancelRefresh := context.WithTimeout(context.WithoutCancel(ctx), 10*time.Second)
refreshRequested, err = channel.registerProfileRefresh(refreshContext)
cancelRefresh()
if err != nil {
channel.close(context.Background())
manager.unlockESIM()
return fmt.Errorf("esim: register QMI UIM refresh: %w", err)
}
// After a refresh=true attempt reports catBusy, retry without asking the
// eUICC to start another REFRESH proactive command. SGP.22 permits the
// card to terminate the pre-existing proactive session in this mode; the
// native-QMI recovery below performs the required SIM reset and cache
// reload on behalf of the device.
if attempt, _ := ctx.Value(esimCATBusyRetryKey{}).(int); attempt > 0 {
refreshRequested = false
}
}
der, err := buildEnableProfileRequestWithRefresh(iccid, refreshRequested)
if err != nil {
channel.close(context.Background())
manager.unlockESIM()
return err
}
// EnableProfile request (SGP.22 ES10c, per lpac): // EnableProfile request (SGP.22 ES10c, per lpac):
// BF31 { A0 { 5A <iccid bcd> } 81 01 FF } (refresh = yes) // BF31 { A0 { 5A <iccid bcd> } 81 01 FF } (refresh = yes)
@@ -829,38 +675,10 @@ func (manager *Manager) ESIMSwitchProfile(ctx context.Context, id string, iccid
// stays a sibling of A0, directly under BF31. // stays a sibling of A0, directly under BF31.
// EnableProfile is a non-idempotent commit. Once its APDU starts, a browser // EnableProfile is a non-idempotent commit. Once its APDU starts, a browser
// disconnect or reverse-proxy timeout must not cancel it halfway through and // disconnect or reverse-proxy timeout must not cancel it halfway through and
// skip post-commit recovery; EC20 may otherwise remain in SIM failure // skip the modem reset, otherwise EC20 remains in SIM failure (+CME 13).
// (+CME 13).
commitContext, cancelCommit := context.WithTimeout(context.WithoutCancel(ctx), csimAPDUTimeout) commitContext, cancelCommit := context.WithTimeout(context.WithoutCancel(ctx), csimAPDUTimeout)
payload, err := channel.es10(commitContext, der) payload, err := channel.es10(commitContext, der)
cancelCommit() cancelCommit()
// A rejected EnableProfile (for example CAT busy) does not emit REFRESH.
// Parse the card-level result before waiting for an indication, otherwise
// every retry needlessly waits for the refresh timeout.
resultBeforeClose, resultPresentBeforeClose := enableProfileResult(payload)
if err == nil && resultPresentBeforeClose && byte(resultBeforeClose) == 5 && nativeQMI {
// Registering CAT2 may immediately deliver a proactive command that was
// already pending before EnableProfile. Drain it on catBusy so the raw
// REFRESH command receives its terminal response before the retry.
catContext, cancelCAT := context.WithTimeout(context.Background(), 3*time.Second)
_ = channel.completeProfileRefresh(catContext)
cancelCAT()
if attempt, _ := ctx.Value(esimCATBusyRetryKey{}).(int); attempt == 0 {
recoveryContext, cancelRecovery := context.WithTimeout(context.Background(), 12*time.Second)
_ = channel.recoverCATBusy(recoveryContext)
cancelRecovery()
}
ackContext, cancelAck := context.WithTimeout(context.Background(), 5*time.Second)
_ = channel.acknowledgeProfileRefresh(ackContext)
cancelAck()
}
if err == nil && resultPresentBeforeClose &&
enableProfileResponseError(byte(resultBeforeClose), payload) == nil &&
refreshRequested && nativeQMI {
refreshContext, cancelRefresh := context.WithTimeout(context.Background(), 20*time.Second)
_ = channel.completeProfileRefresh(refreshContext)
cancelRefresh()
}
// Release the logical channel before any reset: openEuicc's csim holds // Release the logical channel before any reset: openEuicc's csim holds
// opMu only for the duration of each APDU, so by here the lock is free. // opMu only for the duration of each APDU, so by here the lock is free.
closeContext, cancelClose := context.WithTimeout(context.Background(), csimAPDUTimeout) closeContext, cancelClose := context.WithTimeout(context.Background(), csimAPDUTimeout)
@@ -885,48 +703,10 @@ func (manager *Manager) ESIMSwitchProfile(ctx context.Context, id string, iccid
return fmt.Errorf("esim: unexpected EnableProfile response %s", strings.ToUpper(hex.EncodeToString(payload))) return fmt.Errorf("esim: unexpected EnableProfile response %s", strings.ToUpper(hex.EncodeToString(payload)))
} }
if err := enableProfileResponseError(byte(result), payload); err != nil { if err := enableProfileResponseError(byte(result), payload); err != nil {
if errors.Is(err, ErrESIMEnableCATBusy) {
attempt, _ := ctx.Value(esimCATBusyRetryKey{}).(int)
if attempt < 11 {
manager.unlockESIM()
select {
case <-ctx.Done():
return ctx.Err()
case <-time.After(2 * time.Second):
}
return manager.ESIMSwitchProfile(context.WithValue(ctx, esimCATBusyRetryKey{}, attempt+1), id, iccid, aidHex)
}
}
manager.unlockESIM() manager.unlockESIM()
return err return err
} }
manager.markCachedProfileEnabled(id, iccid) manager.markCachedProfileEnabled(id, iccid)
// EnableProfile already requested an eUICC REFRESH. Some AT modems consume
// that proactive command and expose the new subscription immediately, so a
// full CFUN=1,1 reset would only add downtime. Give those devices a short
// chance to prove that their SIM cache is current; modems that keep reporting
// the old ICCID continue through the established reboot/recovery path below.
if manager.canVerifyProfileSwitchWithoutRestart(id) {
probeContext, cancelProbe := context.WithTimeout(
context.WithoutCancel(ctx),
profileSwitchRefreshProbeTimeout(manager),
)
probeErr := manager.verifySwitchedICCIDAttempts(probeContext, id, iccid, 3, time.Second)
cancelProbe()
if probeErr == nil {
// Repopulate the cached snapshot while the AT transport is still live.
// Verification above is authoritative, so snapshot refresh remains
// best-effort just as it is after the legacy reboot path.
refreshContext, cancelRefresh := context.WithTimeout(
context.WithoutCancel(ctx),
manager.longTimeout,
)
_, _ = manager.Refresh(refreshContext, id)
cancelRefresh()
manager.unlockESIM()
return nil
}
}
// The eUICC accepted the target profile. Reset and repopulate the modem in // The eUICC accepted the target profile. Reset and repopulate the modem in
// a detached recovery so it survives an HTTP disconnect, but keep this API // a detached recovery so it survives an HTTP disconnect, but keep this API
// call pending until the live modem ICCID proves that the switch took effect. // call pending until the live modem ICCID proves that the switch took effect.
@@ -941,8 +721,6 @@ func (manager *Manager) ESIMSwitchProfile(ctx context.Context, id string, iccid
return manager.verifySwitchedICCID(verifyContext, id, iccid) return manager.verifySwitchedICCID(verifyContext, id, iccid)
} }
type esimCATBusyRetryKey struct{}
func (manager *Manager) startProfileSwitchRecovery(id string) { func (manager *Manager) startProfileSwitchRecovery(id string) {
done := make(chan struct{}) done := make(chan struct{})
manager.esimRecoveryMu.Lock() manager.esimRecoveryMu.Lock()
@@ -1075,18 +853,6 @@ func (manager *Manager) renameCachedProfile(id, iccid, nickname string) {
// initiating HTTP request. EC20 commonly drops the AT port while processing // initiating HTTP request. EC20 commonly drops the AT port while processing
// CFUN=1,1, so the reset error is intentionally followed by discovery retries. // CFUN=1,1, so the reset error is intentionally followed by discovery retries.
func (manager *Manager) recoverAfterProfileSwitch(id string) { func (manager *Manager) recoverAfterProfileSwitch(id string) {
resetContext, cancelReset := context.WithTimeout(context.Background(), manager.longTimeout)
if native, err := manager.powerCycleNativeQMISIM(resetContext, id); native {
cancelReset()
if err == nil {
time.Sleep(1500 * time.Millisecond)
}
// Native WWAN identity and profile verification are both QMI-backed.
// Do not enter the AT refresh path: OpenStick firmware can accept the
// switch while timing out every EC20-specific AT identity command.
return
}
cancelReset()
if !manager.isPCSCDevice(id) { if !manager.isPCSCDevice(id) {
resetContext, cancelReset := context.WithTimeout(context.Background(), manager.longTimeout) resetContext, cancelReset := context.WithTimeout(context.Background(), manager.longTimeout)
_ = manager.rebootForProfileSwitch(resetContext, id) _ = manager.rebootForProfileSwitch(resetContext, id)
@@ -1209,69 +975,17 @@ func profileSwitchVerificationTimeout(manager *Manager) time.Duration {
return timeout return timeout
} }
func profileSwitchRefreshProbeTimeout(manager *Manager) time.Duration {
// Allow both standard ICCID commands to consume one ordinary command
// timeout, plus a small window for the eUICC REFRESH to settle. Keep the
// optimisation bounded so an older modem reaches its required reboot soon.
timeout := manager.commandTimeout*2 + time.Second
if timeout < 3*time.Second {
return 3 * time.Second
}
if timeout > 10*time.Second {
return 10 * time.Second
}
return timeout
}
func (manager *Manager) canVerifyProfileSwitchWithoutRestart(id string) bool {
_, native, err := manager.nativeQMIControl(id)
return err == nil && !native && !manager.isPCSCDevice(id)
}
// verifySwitchedICCID performs a fresh baseband read after recovery. An ES10c // verifySwitchedICCID performs a fresh baseband read after recovery. An ES10c
// result of zero only means the eUICC accepted the operation; the state change // result of zero only means the eUICC accepted the operation; the state change
// is finalized by REFRESH/reset. The UI must not report success until the modem // is finalized by REFRESH/reset. The UI must not report success until the modem
// is actually exposing the requested ICCID. // is actually exposing the requested ICCID.
func (manager *Manager) verifySwitchedICCID(ctx context.Context, id, expected string) error { func (manager *Manager) verifySwitchedICCID(ctx context.Context, id, expected string) error {
return manager.verifySwitchedICCIDAttempts(ctx, id, expected, 6, 2*time.Second)
}
func (manager *Manager) verifySwitchedICCIDAttempts(
ctx context.Context,
id string,
expected string,
attempts int,
interval time.Duration,
) error {
expected = strings.TrimSpace(expected) expected = strings.TrimSpace(expected)
const attempts = 6
var lastICCID string var lastICCID string
var lastErr error var lastErr error
for attempt := 0; attempt < attempts; attempt++ { for attempt := 0; attempt < attempts; attempt++ {
if control, native, nativeErr := manager.nativeQMIControl(id); native { if manager.isPCSCDevice(id) {
if nativeErr != nil {
lastErr = nativeErr
} else {
state, lookupErr := manager.lookup(id)
if lookupErr != nil {
lastErr = lookupErr
} else {
candidate := manager.candidateFor(state)
candidate.QMIControl = control
live, readErr := manager.readNativeQMIICCID(ctx, candidate)
if readErr == nil {
lastICCID = strings.TrimSpace(live)
if lastICCID == expected {
return nil
}
lastErr = fmt.Errorf("native QMI still reports ICCID %s", lastICCID)
} else {
lastErr = readErr
}
}
}
} else if nativeErr != nil {
lastErr = nativeErr
} else if manager.isPCSCDevice(id) {
snapshot, err := manager.Refresh(ctx, id) snapshot, err := manager.Refresh(ctx, id)
if err == nil { if err == nil {
lastICCID = strings.TrimSpace(snapshot.ICCID) lastICCID = strings.TrimSpace(snapshot.ICCID)
@@ -1305,7 +1019,7 @@ func (manager *Manager) verifySwitchedICCIDAttempts(
} }
if attempt+1 < attempts { if attempt+1 < attempts {
select { select {
case <-time.After(interval): case <-time.After(2 * time.Second):
case <-ctx.Done(): case <-ctx.Done():
return fmt.Errorf("esim: verify enabled profile %s: %w", expected, ctx.Err()) return fmt.Errorf("esim: verify enabled profile %s: %w", expected, ctx.Err())
} }
-68
View File
@@ -1,7 +1,6 @@
package device package device
import ( import (
"bytes"
"context" "context"
"encoding/hex" "encoding/hex"
"errors" "errors"
@@ -207,38 +206,6 @@ func TestVerifySwitchedICCIDReadsLiveModem(t *testing.T) {
client.assertDone(t) client.assertDone(t)
} }
func TestVerifySwitchedICCIDAttemptsAllowsProactiveRefreshToSettle(t *testing.T) {
const target = "89492026266006792824"
client := &transcriptClient{steps: []clientStep{
{command: "AT+CCID", response: okResponse("+CCID: 89441000400128014257F")},
{command: "AT+CCID", response: okResponse("+CCID: " + target + "F")},
}}
manager, id := newStartedTestManager(t, client)
if !manager.canVerifyProfileSwitchWithoutRestart(id) {
t.Fatal("AT modem should be eligible for refresh verification before restart")
}
if err := manager.verifySwitchedICCIDAttempts(context.Background(), id, target, 2, 0); err != nil {
t.Fatalf("verifySwitchedICCIDAttempts: %v", err)
}
client.assertDone(t)
}
func TestProfileSwitchRefreshProbeTimeoutIsBounded(t *testing.T) {
for _, test := range []struct {
command time.Duration
want time.Duration
}{
{command: 100 * time.Millisecond, want: 3 * time.Second},
{command: 3 * time.Second, want: 7 * time.Second},
{command: 30 * time.Second, want: 10 * time.Second},
} {
manager := &Manager{commandTimeout: test.command}
if got := profileSwitchRefreshProbeTimeout(manager); got != test.want {
t.Fatalf("command timeout %s: probe timeout = %s, want %s", test.command, got, test.want)
}
}
}
func TestEUMManufacturerForWatchData(t *testing.T) { func TestEUMManufacturerForWatchData(t *testing.T) {
if got := eumManufacturerForEID("35840574202500000125000001855764"); got != "WatchData Technologies Ltd." { if got := eumManufacturerForEID("35840574202500000125000001855764"); got != "WatchData Technologies Ltd." {
t.Fatalf("manufacturer = %q", got) t.Fatalf("manufacturer = %q", got)
@@ -316,41 +283,6 @@ func TestDiscoverEuiccAIDsFindsXeSIMAlternateISDR(t *testing.T) {
client.assertDone(t) client.assertDone(t)
} }
func TestNativeQMIUsesUIMLogicalChannelForEUICC(t *testing.T) {
manager, _, id := newStartedNativeQMITestManager(t)
if err := manager.SetBackend(id, "qmi"); err != nil {
t.Fatal(err)
}
session := &fakeQMIRadioSession{
openChannel: 3,
apduResponse: []byte{0xDE, 0xAD, 0x90, 0x00},
}
manager.qmiRadioOpener = func(context.Context, string) (qmiRadioSession, error) {
return session, nil
}
channel, err := manager.openEuiccAID(context.Background(), id, isdRAID)
if err != nil {
t.Fatalf("open QMI eUICC: %v", err)
}
payload, sw, err := channel.transmit(context.Background(), []byte{0x80, 0xCA, 0x00, 0x00, 0x00}, 0x80)
if err != nil {
t.Fatalf("transmit QMI APDU: %v", err)
}
if !bytes.Equal(payload, []byte{0xDE, 0xAD}) || sw != 0x9000 {
t.Fatalf("QMI APDU response = %X/%04X", payload, sw)
}
channel.close(context.Background())
if len(session.openedAIDs) != 1 || strings.ToUpper(hex.EncodeToString(session.openedAIDs[0])) != isdRAID {
t.Fatalf("opened AIDs = %X", session.openedAIDs)
}
if len(session.apdus) != 1 || session.apdus[0][0] != 0x83 {
t.Fatalf("QMI APDUs = %X", session.apdus)
}
if len(session.closedChannels) != 1 || session.closedChannels[0] != 3 || session.closeCount != 1 {
t.Fatalf("closed channels/session = %v/%d", session.closedChannels, session.closeCount)
}
}
func TestEUICCChannelStuckWrapsTransientCME(t *testing.T) { func TestEUICCChannelStuckWrapsTransientCME(t *testing.T) {
cause := &modem.CommandError{ cause := &modem.CommandError{
Command: `AT+CSIM=10,"0070000001"`, Command: `AT+CSIM=10,"0070000001"`,
-813
View File
@@ -1,813 +0,0 @@
package device
import (
"context"
"encoding/binary"
"errors"
"fmt"
"log/slog"
"strings"
"sync"
"time"
"github.com/iniwex5/quectel-qmi-go/pkg/qmi"
"vocat/internal/qmiport"
)
type qmiRadioSession interface {
GetOperatingMode(context.Context) (qmi.OperatingMode, error)
SetOperatingMode(context.Context, qmi.OperatingMode) error
Close() error
}
type qmiRadioSessionOpener func(context.Context, string) (qmiRadioSession, error)
type nativeQMIICCIDSession interface {
GetICCID(context.Context) (string, error)
}
type nativeQMIIMEISession interface {
GetIMEI(context.Context) (string, error)
}
type nativeQMIEuiccSession interface {
qmiRadioSession
OpenLogicalChannel(context.Context, uint8, []byte) (byte, error)
CloseLogicalChannel(context.Context, uint8, uint8) error
SendAPDU(context.Context, uint8, uint8, []byte) ([]byte, error)
}
// nativeQMIRefreshSession is implemented by production QMI sessions that can
// participate in the modem's UIM REFRESH state machine. Keep it separate from
// nativeQMIEuiccSession so transcript fakes and older QMI implementations can
// continue to use the APDU transport without pretending to handle indications.
type nativeQMIRefreshSession interface {
RegisterUIMRefresh(context.Context) error
CompleteUIMRefresh(context.Context) error
AcknowledgeUIMRefresh(context.Context) error
}
type nativeQMIUIMResetSession interface {
ResetUIM(context.Context) error
}
type nativeQMIVoWiFiSession interface {
qmiRadioSession
GetICCID(context.Context) (string, error)
GetIMEI(context.Context) (string, error)
GetIMSI(context.Context) (string, error)
GetNativeMCCMNC(context.Context) (string, string, error)
GetUSIMAID(context.Context) ([]byte, error)
GetISIMAID(context.Context) ([]byte, error)
GetServingSystem(context.Context) (*qmi.ServingSystem, error)
AttachDetach(context.Context, bool) error
OpenLogicalChannel(context.Context, uint8, []byte) (byte, error)
CloseLogicalChannel(context.Context, uint8, uint8) error
SendAPDU(context.Context, uint8, uint8, []byte) ([]byte, error)
PowerOffSIM(context.Context, uint8) error
PowerOnSIM(context.Context, uint8) error
}
// nativeQMIControl identifies the QMI control node exposed by native WWAN
// devices. USB serial modems may also advertise a control path, but only the
// wwanN/qmiN pairing is safe to operate through the native QMI path.
func (manager *Manager) nativeQMIControl(id string) (string, bool, error) {
state, err := manager.lookup(id)
if err != nil {
return "", false, err
}
candidate := manager.candidateFor(state)
controlDevice := strings.TrimSpace(candidate.QMIControl)
deviceID := strings.TrimSpace(candidate.ID)
if !nativeQMIControlMatches(deviceID, controlDevice) {
return "", false, nil
}
return controlDevice, true, nil
}
type productionQMIRadioSession struct {
client *qmi.Client
dms *qmi.DMSService
nas *qmi.NASService
nasErr error
catID uint8
uimMu sync.Mutex
uim *qmi.UIMService
lease *qmiport.Lease
}
// The native WWAN path uses the same QMI NAS client for radio wake-up,
// operator selection, and registration. Keep these methods optional on the
// qmiRadioSession interface so the older transcript-backed tests and AT-only
// devices do not need to grow a fake NAS implementation.
func (session *productionQMIRadioSession) nasService() (*qmi.NASService, error) {
if session == nil {
return nil, errors.New("QMI NAS session is unavailable")
}
if session.nas == nil {
if session.nasErr != nil {
return nil, session.nasErr
}
return nil, errors.New("QMI NAS session is unavailable")
}
return session.nas, nil
}
func (session *productionQMIRadioSession) GetServingSystem(ctx context.Context) (*qmi.ServingSystem, error) {
nas, err := session.nasService()
if err != nil {
return nil, err
}
return nas.GetServingSystem(ctx)
}
func (session *productionQMIRadioSession) GetSystemSelectionPreference(ctx context.Context) (*qmi.SystemSelectionPreference, error) {
nas, err := session.nasService()
if err != nil {
return nil, err
}
return nas.GetSystemSelectionPreference(ctx)
}
func (session *productionQMIRadioSession) SetSystemSelectionPreference(ctx context.Context, pref qmi.SystemSelectionPreference) error {
nas, err := session.nasService()
if err != nil {
return err
}
return nas.SetSystemSelectionPreference(ctx, pref)
}
func (session *productionQMIRadioSession) InitiateNetworkRegister(ctx context.Context, req qmi.NASInitiateNetworkRegisterRequest) error {
nas, err := session.nasService()
if err != nil {
return err
}
return nas.InitiateNetworkRegister(ctx, req)
}
func (session *productionQMIRadioSession) ForceNetworkSearch(ctx context.Context) error {
nas, err := session.nasService()
if err != nil {
return err
}
return nas.ForceNetworkSearch(ctx)
}
func (session *productionQMIRadioSession) AttachDetach(ctx context.Context, attached bool) error {
nas, err := session.nasService()
if err != nil {
return err
}
return nas.AttachDetach(ctx, attached)
}
// openQMIRadioSession controls native WWAN radios through QMI DMS. OpenStick
// 410 firmware rejects AT+CFUN=1 even though the equivalent DMS online request
// is supported, so native WWAN devices must not fall back to the AT path.
func openQMIRadioSession(ctx context.Context, controlDevice string) (qmiRadioSession, error) {
if ctx == nil {
ctx = context.Background()
}
openContext, cancel := context.WithTimeout(ctx, 15*time.Second)
defer cancel()
lease, err := qmiport.Acquire(openContext, controlDevice)
if err != nil {
return nil, err
}
opts := qmi.DefaultClientOptions()
opts.UseProxy = true
opts.Logf = func(qmi.ClientLogLevel, string, ...any) {}
client, err := qmi.NewClientWithOptions(openContext, controlDevice, opts)
if err != nil {
lease.Release()
return nil, err
}
dms, err := qmi.NewDMSServiceWithContext(openContext, client)
if err != nil {
_ = client.Close()
lease.Release()
return nil, err
}
// NAS is optional for ordinary radio controls. Some firmware exposes DMS
// but rejects NAS client allocation; keep radio control usable and report
// that limitation only to native registration/RF queries.
nas, nasErr := qmi.NewNASServiceWithContext(openContext, client)
return &productionQMIRadioSession{
client: client,
dms: dms,
nas: nas,
nasErr: nasErr,
lease: lease,
}, nil
}
func (session *productionQMIRadioSession) GetICCID(ctx context.Context) (string, error) {
uim, err := session.uimService(ctx)
if err != nil {
return "", err
}
return uim.GetICCID(ctx)
}
func (session *productionQMIRadioSession) GetIMSI(ctx context.Context) (string, error) {
uim, err := session.uimService(ctx)
if err != nil {
return "", err
}
return uim.GetIMSI(ctx)
}
func (session *productionQMIRadioSession) GetNativeMCCMNC(ctx context.Context) (string, string, error) {
uim, err := session.uimService(ctx)
if err != nil {
return "", "", err
}
return uim.GetNativeMCCMNC(ctx)
}
func (session *productionQMIRadioSession) GetUSIMAID(ctx context.Context) ([]byte, error) {
uim, err := session.uimService(ctx)
if err != nil {
return nil, err
}
return uim.GetUSIMAID(ctx)
}
func (session *productionQMIRadioSession) GetISIMAID(ctx context.Context) ([]byte, error) {
uim, err := session.uimService(ctx)
if err != nil {
return nil, err
}
return uim.GetISIMAID(ctx)
}
func (session *productionQMIRadioSession) PowerOffSIM(ctx context.Context, slot uint8) error {
uim, err := session.uimService(ctx)
if err != nil {
return err
}
return uim.PowerOffSIM(ctx, slot)
}
func (session *productionQMIRadioSession) PowerOnSIM(ctx context.Context, slot uint8) error {
uim, err := session.uimService(ctx)
if err != nil {
return err
}
return uim.PowerOnSIM(ctx, slot)
}
func (session *productionQMIRadioSession) ResetUIM(ctx context.Context) error {
uim, err := session.uimService(ctx)
if err != nil {
return err
}
return uim.Reset(ctx)
}
func (session *productionQMIRadioSession) uimService(ctx context.Context) (*qmi.UIMService, error) {
if session == nil || session.client == nil {
return nil, errors.New("QMI UIM session is unavailable")
}
session.uimMu.Lock()
defer session.uimMu.Unlock()
if session.uim == nil {
uim, err := qmi.NewUIMServiceWithContext(ctx, session.client)
if err != nil {
return nil, err
}
session.uim = uim
}
return session.uim, nil
}
func (session *productionQMIRadioSession) OpenLogicalChannel(ctx context.Context, slot uint8, aid []byte) (byte, error) {
uim, err := session.uimService(ctx)
if err != nil {
return 0, err
}
return uim.OpenLogicalChannel(ctx, slot, aid)
}
func (session *productionQMIRadioSession) CloseLogicalChannel(ctx context.Context, slot, channel uint8) error {
uim, err := session.uimService(ctx)
if err != nil {
return err
}
return uim.CloseLogicalChannel(ctx, slot, channel)
}
func (session *productionQMIRadioSession) SendAPDU(ctx context.Context, slot, channel uint8, command []byte) ([]byte, error) {
uim, err := session.uimService(ctx)
if err != nil {
return nil, err
}
return uim.SendAPDU(ctx, slot, channel, command)
}
// RegisterUIMRefresh mirrors the terminal registration used by libqmi for a
// physical card slot. EnableProfile(refresh=true) may cause the eUICC to issue
// a proactive REFRESH; without a registered terminal the card remains CAT busy
// after the profile has changed and rejects the next profile operation.
func (session *productionQMIRadioSession) RegisterUIMRefresh(ctx context.Context) error {
uim, err := session.uimService(ctx)
if err != nil {
return err
}
if err := uim.RefreshRegisterAll(ctx, qmi.UIMRefreshRegisterAllRequest{
SessionType: qmi.UIMSessionTypeCardSlot1,
RegisterFlag: true,
}); err != nil {
return err
}
if session.catID == 0 {
clientID, err := session.client.AllocateClientIDWithContext(ctx, qmi.ServiceCAT2)
if err != nil {
return fmt.Errorf("allocate QMI CAT2 client: %w", err)
}
session.catID = clientID
}
configuration, configErr := session.client.SendRequest(ctx, qmi.ServiceCAT2, session.catID, 0x002E, nil)
if configErr == nil && configuration.CheckResult() == nil {
if modeTLV := qmi.FindTLV(configuration.TLVs, 0x10); modeTLV != nil && len(modeTLV.Value) > 0 {
slog.Info("QMI CAT2 configuration", "mode", modeTLV.Value[0])
}
}
response, err := session.client.SendRequest(ctx, qmi.ServiceCAT2, session.catID, 0x0001, []qmi.TLV{
// Claim the raw proactive-command events implemented by this CAT2
// generation (bits 0..22 and 24..25). A profile can leave any STK
// command pending, not only REFRESH, and SGP.22 forbids profile changes
// while that proactive session is unanswered.
{Type: 0x10, Value: []byte{0xFF, 0xFF, 0x7F, 0x03}},
// Slot mask bit 0 selects slot 1.
{Type: 0x12, Value: []byte{0x01}},
})
if err != nil {
return fmt.Errorf("register QMI CAT2 refresh: %w", err)
}
if err := response.CheckResult(); err != nil {
return fmt.Errorf("register QMI CAT2 refresh: %w", err)
}
for _, tlv := range response.TLVs {
if tlv.Type >= 0x10 && tlv.Type <= 0x12 {
slog.Info("QMI CAT2 registration response", "tlv", fmt.Sprintf("0x%02X", tlv.Type), "value", fmt.Sprintf("%X", tlv.Value))
}
}
return nil
}
// CompleteUIMRefresh consumes refresh indications on the same QMI client that
// registered for them. Qualcomm requires RefreshComplete only for START
// indications whose mode is not RESET; RESET is completed by the modem itself.
func (session *productionQMIRadioSession) CompleteUIMRefresh(ctx context.Context) error {
if session == nil || session.client == nil {
return errors.New("QMI UIM refresh session is unavailable")
}
uim, err := session.uimService(ctx)
if err != nil {
return err
}
refreshCompleted := false
uimEnded := false
catEnded := false
for {
select {
case <-ctx.Done():
// Some firmware handles a RESET internally and never forwards an
// indication to this client. A missing indication is therefore not
// a failed profile commit.
return nil
case event, ok := <-session.client.Events():
if !ok {
return nil
}
if event.ServiceID == qmi.ServiceCAT2 && event.MessageID == 0x0001 {
for _, eventTLV := range event.Packet.TLVs {
slog.Info("QMI CAT2 event", "tlv", fmt.Sprintf("0x%02X", eventTLV.Type), "length", len(eventTLV.Value))
}
if tlv := qmi.FindTLV(event.Packet.TLVs, 0x19); tlv != nil && len(tlv.Value) >= 4 {
mode := uint16(tlv.Value[0]) | uint16(tlv.Value[1])<<8
stage := uint16(tlv.Value[2]) | uint16(tlv.Value[3])<<8
slog.Info("QMI CAT2 profile refresh", "stage", stage, "mode", mode)
if stage == 3 {
return errors.New("QMI CAT2 refresh ended with failure")
}
}
// UIM refresh completion is not a CAT terminal response. Qualcomm
// delivers the raw proactive command in a command-specific TLV; send
// a response carrying that command's reference ID. Unsupported UI STK
// commands receive the standards-defined "beyond terminal
// capabilities" result, which still closes the proactive session.
for _, commandTLV := range event.Packet.TLVs {
if !isRawCATCommandTLV(commandTLV.Type) {
continue
}
ref, terminalResponse, commandType, responseOK := catProactiveTerminalResponse(commandTLV.Value)
if !responseOK {
continue
}
if err := session.sendCATTerminalResponse(ctx, ref, terminalResponse); err != nil {
return err
}
slog.Info("QMI CAT2 terminal response sent", "reference", ref, "command", fmt.Sprintf("0x%02X", commandType))
break
}
if tlv := qmi.FindTLV(event.Packet.TLVs, 0x1A); tlv != nil && len(tlv.Value) > 0 {
// Older MDM8916 CAT2 firmware encodes this enum in one byte;
// newer interface descriptions model it as a 32-bit value.
reason := uint32(tlv.Value[0])
if len(tlv.Value) >= 4 {
reason |= uint32(tlv.Value[1])<<8 | uint32(tlv.Value[2])<<16 | uint32(tlv.Value[3])<<24
}
slog.Info("QMI CAT2 proactive session ended", "reason", reason)
catEnded = true
if uimEnded {
return nil
}
}
continue
}
if event.Type != qmi.EventUIMRefresh {
continue
}
info, parseErr := qmi.ParseUIMRefreshIndication(event.Packet)
if parseErr != nil {
return parseErr
}
const (
refreshStageWaitForOK = uint8(0)
refreshStageStart = uint8(1)
refreshStageSuccess = uint8(2)
refreshStageFailure = uint8(3)
refreshModeReset = uint8(0)
)
slog.Info("QMI UIM profile refresh", "stage", info.Stage, "mode", info.Mode)
switch info.Stage {
case refreshStageWaitForOK:
// Registration without a vote advances on its own. Keep the UIM
// client alive for the subsequent START and END indications.
continue
case refreshStageStart:
if info.Mode == refreshModeReset || refreshCompleted {
continue
}
// libqmi intentionally uses CARD_SLOT_1 here rather than echoing
// the provisioning session from the indication.
_ = uim.RefreshComplete(ctx, qmi.UIMRefreshCompleteRequest{
SessionType: qmi.UIMSessionTypeCardSlot1,
RefreshSuccess: true,
})
refreshCompleted = true
continue
case refreshStageSuccess:
uimEnded = true
if catEnded {
return nil
}
continue
case refreshStageFailure:
return errors.New("QMI UIM refresh ended with failure")
default:
continue
}
}
}
}
func (session *productionQMIRadioSession) sendCATTerminalResponse(ctx context.Context, reference uint32, terminalResponse []byte) error {
value := make([]byte, 0, 6+len(terminalResponse))
value = binary.LittleEndian.AppendUint32(value, reference)
value = binary.LittleEndian.AppendUint16(value, uint16(len(terminalResponse)))
value = append(value, terminalResponse...)
response, err := session.client.SendRequest(ctx, qmi.ServiceCAT2, session.catID, 0x0021, []qmi.TLV{
{Type: 0x01, Value: value},
{Type: 0x10, Value: []byte{0x01}}, // CAT slot 1 (not a slot mask)
})
if err != nil {
return fmt.Errorf("send QMI CAT2 refresh terminal response: %w", err)
}
if err := response.CheckResult(); err != nil {
return fmt.Errorf("send QMI CAT2 refresh terminal response: %w", err)
}
return nil
}
// catProactiveTerminalResponse extracts a raw CAT command carried as
// {reference:uint32LE, length:uint16LE, BER-TLV command} and creates the
// standards-shaped terminal response. VoCat has no interactive STK UI, so
// commands other than REFRESH/MORE TIME are explicitly reported unsupported.
func catProactiveTerminalResponse(raw []byte) (uint32, []byte, byte, bool) {
if len(raw) < 8 {
return 0, nil, 0, false
}
reference := binary.LittleEndian.Uint32(raw[:4])
commandLength := int(binary.LittleEndian.Uint16(raw[4:6]))
if commandLength <= 0 || commandLength > len(raw)-6 {
return 0, nil, 0, false
}
command := raw[6 : 6+commandLength]
if len(command) < 2 || command[0] != 0xD0 {
return 0, nil, 0, false
}
bodyLength, lengthBytes, ok := catBERLength(command[1:])
if !ok || 1+lengthBytes+bodyLength > len(command) {
return 0, nil, 0, false
}
body := command[1+lengthBytes : 1+lengthBytes+bodyLength]
for offset := 0; offset < len(body); {
tag := body[offset]
offset++
length, consumed, ok := catBERLength(body[offset:])
if !ok || offset+consumed+length > len(body) {
return 0, nil, 0, false
}
offset += consumed
value := body[offset : offset+length]
offset += length
if tag&0x7F != 0x01 || len(value) < 3 {
continue
}
result := byte(0x30) // command beyond terminal capabilities
if value[1] == 0x01 || value[1] == 0x02 { // REFRESH or MORE TIME
result = 0x00 // command performed successfully
}
terminalResponse := []byte{
0x81, 0x03, value[0], value[1], value[2], // command details
0x82, 0x02, 0x82, 0x81, // terminal -> UICC
0x83, 0x01, result,
}
return reference, terminalResponse, value[1], true
}
return 0, nil, 0, false
}
func catRefreshTerminalResponse(raw []byte) (uint32, []byte, bool) {
reference, response, commandType, ok := catProactiveTerminalResponse(raw)
return reference, response, ok && commandType == 0x01
}
func isRawCATCommandTLV(tag byte) bool {
switch tag {
case 0x10, 0x11, 0x12, 0x13, 0x14, 0x17, 0x18,
0x47, 0x48, 0x49, 0x4A, 0x4B, 0x4C, 0x4D, 0x4E, 0x4F,
0x51, 0x52, 0x53, 0x54, 0x66, 0x6A:
return true
default:
return false
}
}
func catBERLength(raw []byte) (length int, consumed int, ok bool) {
if len(raw) == 0 {
return 0, 0, false
}
switch raw[0] {
case 0x81:
if len(raw) < 2 {
return 0, 0, false
}
return int(raw[1]), 2, true
case 0x82:
if len(raw) < 3 {
return 0, 0, false
}
return int(raw[1])<<8 | int(raw[2]), 3, true
default:
if raw[0]&0x80 != 0 {
return 0, 0, false
}
return int(raw[0]), 1, true
}
}
// AcknowledgeUIMRefresh is a recovery vote for a refresh that predates this
// QMI client. Qualcomm documents RefreshComplete as harmless when no vote is
// pending; it lets a newly started service release a stale CAT-busy condition
// left by an interrupted LPA/terminal transaction.
func (session *productionQMIRadioSession) AcknowledgeUIMRefresh(ctx context.Context) error {
uim, err := session.uimService(ctx)
if err != nil {
return err
}
return uim.RefreshComplete(ctx, qmi.UIMRefreshCompleteRequest{
SessionType: qmi.UIMSessionTypeCardSlot1,
RefreshSuccess: true,
})
}
func (session *productionQMIRadioSession) GetIMEI(ctx context.Context) (string, error) {
if session == nil || session.dms == nil {
return "", errors.New("QMI DMS identity session is unavailable")
}
info, err := session.dms.GetDeviceSerialNumbers(ctx)
if err != nil {
return "", err
}
return info.IMEI, nil
}
func (session *productionQMIRadioSession) GetOperatingMode(ctx context.Context) (qmi.OperatingMode, error) {
return session.dms.GetOperatingMode(ctx)
}
func (session *productionQMIRadioSession) SetOperatingMode(ctx context.Context, mode qmi.OperatingMode) error {
return session.dms.SetOperatingMode(ctx, mode)
}
func (session *productionQMIRadioSession) Close() error {
if session == nil {
return nil
}
var closeErrors []error
session.uimMu.Lock()
if session.uim != nil {
closeErrors = append(closeErrors, session.uim.Close())
session.uim = nil
}
session.uimMu.Unlock()
if session.dms != nil {
closeErrors = append(closeErrors, session.dms.Close())
session.dms = nil
}
if session.nas != nil {
closeErrors = append(closeErrors, session.nas.Close())
session.nas = nil
}
if session.client != nil && session.catID != 0 {
closeErrors = append(closeErrors, session.client.ReleaseClientID(qmi.ServiceCAT2, session.catID))
session.catID = 0
}
if session.client != nil {
closeErrors = append(closeErrors, session.client.Close())
session.client = nil
}
if session.lease != nil {
session.lease.Release()
session.lease = nil
}
return errors.Join(closeErrors...)
}
func (manager *Manager) setNativeQMIFlight(
ctx context.Context,
id string,
state *managedDevice,
enabled bool,
) (FlightResult, bool, error) {
controlDevice, native, err := manager.nativeQMIControl(id)
if err != nil {
return FlightResult{}, true, err
}
if !native {
return FlightResult{}, false, nil
}
if manager.qmiRadioOpener == nil {
return FlightResult{}, true, errors.New("QMI DMS radio control is unavailable")
}
if ctx == nil {
ctx = context.Background()
}
openContext, cancelOpen := manager.withTimeout(ctx, manager.commandTimeout*5)
session, err := manager.qmiRadioOpener(openContext, controlDevice)
cancelOpen()
if err != nil {
return FlightResult{}, true, fmt.Errorf("open QMI DMS radio control: %w", err)
}
defer session.Close()
readContext, cancelRead := manager.withTimeout(ctx, manager.commandTimeout)
previousQMI, err := session.GetOperatingMode(readContext)
cancelRead()
if err != nil {
return FlightResult{}, true, fmt.Errorf("read QMI operating mode: %w", err)
}
previous := qmiModeAsCFUN(previousQMI)
targetQMI := previousQMI
if enabled {
if !isQMIRadioOffMode(previousQMI) {
targetQMI = qmi.ModeLowPower
}
} else if previousQMI != qmi.ModeOnline {
targetQMI = qmi.ModeOnline
}
changed := targetQMI != previousQMI
if changed {
setContext, cancelSet := manager.withTimeout(ctx, manager.commandTimeout)
err = session.SetOperatingMode(setContext, targetQMI)
cancelSet()
if err != nil {
return FlightResult{
PreviousMode: previous,
CurrentMode: previous,
FlightMode: isQMIRadioOffMode(previousQMI),
RadioOff: isQMIRadioOffMode(previousQMI),
}, true, fmt.Errorf("set QMI operating mode: %w", err)
}
}
currentQMI, err := manager.waitForQMIRadioState(ctx, session, enabled, targetQMI)
if err != nil {
currentRadioOff := isQMIRadioOffMode(currentQMI)
return FlightResult{
PreviousMode: previous,
CurrentMode: qmiModeAsCFUN(currentQMI),
Changed: changed,
FlightMode: currentRadioOff,
RadioOff: currentRadioOff,
}, true, err
}
current := qmiModeAsCFUN(currentQMI)
currentRadioOff := isQMIRadioOffMode(currentQMI)
manager.updateSnapshotMode(id, state, current)
if !enabled && !currentRadioOff {
// DMS Online is only the radio half of the recovery. Continue with a
// background NAS registration/PS-attach reconcile after the flight-mode
// transition without holding the radio QMI session open.
manager.startNativeQMIRegistrationReconcile(id)
}
return FlightResult{
PreviousMode: previous,
CurrentMode: current,
Changed: changed,
FlightMode: currentRadioOff,
RadioOff: currentRadioOff,
}, true, nil
}
func (manager *Manager) waitForQMIRadioState(
ctx context.Context,
session qmiRadioSession,
radioOff bool,
fallback qmi.OperatingMode,
) (qmi.OperatingMode, error) {
verifyTimeout := manager.commandTimeout * 2
if verifyTimeout < 5*time.Second {
verifyTimeout = 5 * time.Second
}
verifyContext, cancel := manager.withTimeout(ctx, verifyTimeout)
defer cancel()
current := fallback
var lastErr error
for {
mode, err := session.GetOperatingMode(verifyContext)
if err == nil {
current = mode
lastErr = nil
if qmiModeMatchesFlight(mode, radioOff) {
return mode, nil
}
} else {
lastErr = err
}
timer := time.NewTimer(250 * time.Millisecond)
select {
case <-verifyContext.Done():
if !timer.Stop() {
select {
case <-timer.C:
default:
}
}
if lastErr != nil {
return current, fmt.Errorf("verify QMI operating mode: %w", lastErr)
}
return current, fmt.Errorf(
"QMI operating mode did not reach requested radio state (mode %d): %w",
current,
verifyContext.Err(),
)
case <-timer.C:
}
}
}
func qmiModeMatchesFlight(mode qmi.OperatingMode, radioOff bool) bool {
if radioOff {
return isQMIRadioOffMode(mode)
}
return mode == qmi.ModeOnline
}
func isQMIRadioOffMode(mode qmi.OperatingMode) bool {
switch mode {
case qmi.ModeLowPower, qmi.ModeOffline, qmi.ModeShutdown, qmi.ModePersistLow, qmi.ModeOnlyLowPower:
return true
default:
return false
}
}
// FlightResult and Snapshot historically expose AT+CFUN values. Preserve that
// API contract while sourcing the real radio state from QMI DMS.
func qmiModeAsCFUN(mode qmi.OperatingMode) int {
switch mode {
case qmi.ModeOnline:
return 1
case qmi.ModeLowPower, qmi.ModePersistLow:
return 0
case qmi.ModeOffline, qmi.ModeShutdown, qmi.ModeOnlyLowPower:
return 7
default:
return 1
}
}
-52
View File
@@ -1,52 +0,0 @@
package device
import (
"bytes"
"testing"
)
func TestCATRefreshTerminalResponse(t *testing.T) {
raw := []byte{
0x44, 0x33, 0x22, 0x11, // reference
0x0B, 0x00, // command length
0xD0, 0x09,
0x81, 0x03, 0x07, 0x01, 0x00,
0x82, 0x02, 0x81, 0x82,
}
reference, response, ok := catRefreshTerminalResponse(raw)
if !ok {
t.Fatal("catRefreshTerminalResponse() did not recognize REFRESH")
}
if reference != 0x11223344 {
t.Fatalf("reference = 0x%08X", reference)
}
want := []byte{
0x81, 0x03, 0x07, 0x01, 0x00,
0x82, 0x02, 0x82, 0x81,
0x83, 0x01, 0x00,
}
if !bytes.Equal(response, want) {
t.Fatalf("response = % X, want % X", response, want)
}
}
func TestCATRefreshTerminalResponseRejectsOtherCommands(t *testing.T) {
raw := []byte{
0x01, 0x00, 0x00, 0x00,
0x0B, 0x00,
0xD0, 0x09,
0x81, 0x03, 0x01, 0x21, 0x00, // DISPLAY TEXT
0x82, 0x02, 0x81, 0x02,
}
if _, _, ok := catRefreshTerminalResponse(raw); ok {
t.Fatal("catRefreshTerminalResponse() accepted a non-REFRESH command")
}
}
func TestCATRefreshTerminalResponseSupportsLongBERLength(t *testing.T) {
command := []byte{0xD0, 0x81, 0x09, 0x81, 0x03, 0x02, 0x01, 0x01, 0x82, 0x02, 0x81, 0x82}
raw := append([]byte{0x02, 0x00, 0x00, 0x00, byte(len(command)), 0x00}, command...)
if _, _, ok := catRefreshTerminalResponse(raw); !ok {
t.Fatal("catRefreshTerminalResponse() rejected 0x81 BER length")
}
}
-63
View File
@@ -1,63 +0,0 @@
package device
import (
"context"
"errors"
"fmt"
"vocat/internal/modem"
)
func (manager *Manager) readNativeQMIICCID(ctx context.Context, candidate modem.Candidate) (string, error) {
if manager == nil || manager.qmiRadioOpener == nil {
return "", errors.New("QMI UIM ICCID reader is unavailable")
}
if candidate.QMIControl == "" {
return "", errors.New("QMI UIM control device is unavailable")
}
session, err := manager.qmiRadioOpener(ctx, candidate.QMIControl)
if err != nil {
return "", fmt.Errorf("open QMI UIM control: %w", err)
}
if session == nil {
return "", errors.New("QMI UIM control returned an empty session")
}
defer session.Close()
reader, ok := session.(nativeQMIICCIDSession)
if !ok {
return "", errors.New("QMI session does not expose UIM ICCID reading")
}
value, err := reader.GetICCID(ctx)
if err != nil {
return "", fmt.Errorf("read EF_ICCID: %w", err)
}
iccid := parseICCIDIdentifier(modem.Response{Lines: []string{value}}, nil, 18, 22)
if iccid == "" {
return "", errors.New("QMI UIM returned an invalid ICCID")
}
return iccid, nil
}
func (manager *Manager) readNativeQMIIMEI(ctx context.Context, candidate modem.Candidate) (string, error) {
if manager.qmiRadioOpener == nil {
return "", errors.New("QMI DMS IMEI reader is unavailable")
}
session, err := manager.qmiRadioOpener(ctx, candidate.QMIControl)
if err != nil {
return "", err
}
defer session.Close()
reader, ok := session.(nativeQMIIMEISession)
if !ok {
return "", errors.New("QMI session does not expose DMS IMEI reading")
}
value, err := reader.GetIMEI(ctx)
if err != nil {
return "", fmt.Errorf("read device serial numbers: %w", err)
}
imei := parseIdentifier(modem.Response{Lines: []string{value}}, nil, 14, 17)
if imei == "" {
return "", errors.New("QMI DMS returned an invalid IMEI")
}
return imei, nil
}
-84
View File
@@ -1,84 +0,0 @@
package device
import (
"regexp"
"strings"
"unicode"
"vocat/internal/modem"
)
const maxHardwareErrorDetail = 1024
var longHexPayload = regexp.MustCompile(`(?i)\b[0-9a-f]{48,}\b`)
// HardwareErrorDetail returns a diagnostic error suitable for persistent and
// browser-visible logs. AT payloads can contain APDU authentication material,
// SMS data, or APN credentials, so CommandError values retain only the command
// name and modem final result. Very long hexadecimal payloads from wrapped
// protocol errors are removed as a second line of defence.
func HardwareErrorDetail(err error) string {
if err == nil {
return ""
}
detail := redactCommandErrors(err.Error(), err)
detail = longHexPayload.ReplaceAllString(detail, "[redacted hex payload]")
detail = strings.Map(func(character rune) rune {
if unicode.IsControl(character) && character != '\t' && character != '\n' {
return ' '
}
return character
}, strings.TrimSpace(detail))
runes := []rune(detail)
if len(runes) > maxHardwareErrorDetail {
detail = string(runes[:maxHardwareErrorDetail]) + "..."
}
return detail
}
func redactCommandErrors(detail string, err error) string {
if commandErr, ok := err.(*modem.CommandError); ok {
detail = strings.ReplaceAll(detail, commandErr.Error(), safeCommandError(commandErr))
}
switch wrapped := err.(type) {
case interface{ Unwrap() []error }:
for _, child := range wrapped.Unwrap() {
detail = redactCommandErrors(detail, child)
}
case interface{ Unwrap() error }:
if child := wrapped.Unwrap(); child != nil {
detail = redactCommandErrors(detail, child)
}
}
return detail
}
func safeCommandError(err *modem.CommandError) string {
command := safeATCommandName(err.Command)
final := strings.TrimSpace(err.Final)
if final == "" {
final = "unknown modem error"
}
return command + " failed: " + final
}
func safeATCommandName(command string) string {
command = strings.ToUpper(strings.TrimSpace(command))
if command == "" {
return "AT command"
}
if strings.HasPrefix(command, "ATD") {
return "ATD"
}
for index, character := range command {
if character == '=' || character == '?' || character == ',' ||
character == '"' || unicode.IsSpace(character) {
command = command[:index]
break
}
}
if !strings.HasPrefix(command, "AT") || len(command) > 32 {
return "AT command"
}
return command
}
-68
View File
@@ -1,68 +0,0 @@
package device
import (
"context"
"errors"
"fmt"
"log/slog"
"strings"
"testing"
"vocat/internal/loghub"
"vocat/internal/modem"
)
func TestHardwareErrorDetailRedactsATPayload(t *testing.T) {
const payload = "00880081221000112233445566778899AABBCCDDEEFF1000112233445566778899AABBCCDDEEFF00"
commandErr := &modem.CommandError{
Command: `AT+CSIM=78,"` + payload + `"`,
Final: "+CME ERROR: 13",
Lines: []string{payload},
}
err := fmt.Errorf("select ISIM: %w", errors.Join(errors.New("reader reset failed"), commandErr))
detail := HardwareErrorDetail(err)
if strings.Contains(detail, payload) || strings.Contains(detail, "AT+CSIM=") {
t.Fatalf("hardware error exposed AT payload: %q", detail)
}
if !strings.Contains(detail, "select ISIM") || !strings.Contains(detail, "AT+CSIM failed: +CME ERROR: 13") {
t.Fatalf("hardware error lost useful diagnostics: %q", detail)
}
}
func TestManagerLogsNewHardwareFailuresWithoutPollingSpam(t *testing.T) {
commandError := func() error {
return &modem.CommandError{Command: "AT+CSQ", Final: "+CME ERROR: 13"}
}
client := &transcriptClient{steps: []clientStep{
{command: "AT+CSQ", err: commandError()},
{command: "AT+CSQ", err: commandError()},
{command: "AT+CSQ", response: okResponse("+CSQ: 20,99")},
{command: "AT+CSQ", err: commandError()},
}}
manager, id := newStartedTestManager(t, client)
hub := loghub.New(nil, 100)
manager.logger = slog.New(hub)
for attempt := 0; attempt < 2; attempt++ {
_, _ = manager.ExecuteAT(context.Background(), id, "AT+CSQ")
}
if entries := hub.History(10, slog.LevelDebug, ""); len(entries) != 1 {
t.Fatalf("continuous failure produced %d log entries, want 1", len(entries))
}
_, _ = manager.ExecuteAT(context.Background(), id, "AT+CSQ")
_, _ = manager.ExecuteAT(context.Background(), id, "AT+CSQ")
entries := hub.History(10, slog.LevelDebug, "")
if len(entries) != 2 {
t.Fatalf("failure after recovery produced %d total log entries, want 2", len(entries))
}
for _, entry := range entries {
if entry.Message != "hardware operation failed" || entry.Fields["device_id"] != id {
t.Fatalf("hardware log entry = %#v", entry)
}
if entry.Fields["error"] != "AT+CSQ failed: +CME ERROR: 13" {
t.Fatalf("hardware log detail = %#v", entry.Fields["error"])
}
}
client.assertDone(t)
}
+5 -45
View File
@@ -4,7 +4,6 @@ import (
"context" "context"
"errors" "errors"
"fmt" "fmt"
"log/slog"
"sort" "sort"
"strings" "strings"
"sync" "sync"
@@ -22,7 +21,6 @@ type Options struct {
SMSTimeout time.Duration SMSTimeout time.Duration
ScanTimeout time.Duration ScanTimeout time.Duration
CardReaders *pcsc.Service CardReaders *pcsc.Service
Logger *slog.Logger
} }
type Manager struct { type Manager struct {
@@ -40,15 +38,9 @@ type Manager struct {
smsTimeout time.Duration smsTimeout time.Duration
scanTimeout time.Duration scanTimeout time.Duration
cardReaders *pcsc.Service cardReaders *pcsc.Service
logger *slog.Logger started bool
devices map[string]*managedDevice
qmiRadioOpener qmiRadioSessionOpener ussdSessions map[string]ussdSession
nativeQMIRegistrationMu sync.Mutex
nativeQMIRegistrationInFlight map[string]struct{}
started bool
devices map[string]*managedDevice
ussdSessions map[string]ussdSession
} }
// LockUICC and UnlockUICC allow another in-process UICC client (currently the // LockUICC and UnlockUICC allow another in-process UICC client (currently the
@@ -123,11 +115,6 @@ func NewManager(options Options) (*Manager, error) {
smsTimeout: options.SMSTimeout, smsTimeout: options.SMSTimeout,
scanTimeout: options.ScanTimeout, scanTimeout: options.ScanTimeout,
cardReaders: options.CardReaders, cardReaders: options.CardReaders,
logger: options.Logger,
qmiRadioOpener: openQMIRadioSession,
nativeQMIRegistrationInFlight: make(map[string]struct{}),
devices: make(map[string]*managedDevice), devices: make(map[string]*managedDevice),
ussdSessions: make(map[string]ussdSession), ussdSessions: make(map[string]ussdSession),
esimRecoveries: make(map[string]chan struct{}), esimRecoveries: make(map[string]chan struct{}),
@@ -245,20 +232,7 @@ func (manager *Manager) Discover(ctx context.Context) ([]Device, error) {
state.opMu.Unlock() state.opMu.Unlock()
} }
manager.resetChangedClients() manager.resetChangedClients()
return manager.List(), nil
// List retains previously discovered devices so configured hardware can be
// rendered as offline after it is unplugged. Discover, however, is a fresh
// physical scan and must only return devices that are present now. Returning
// the retained entries here allowed an unplugged modem to be selected and
// added again from the device discovery screen.
devices := manager.List()
present := devices[:0]
for _, entry := range devices {
if entry.Discovered {
present = append(present, entry)
}
}
return present, nil
} }
func (manager *Manager) resetChangedClients() { func (manager *Manager) resetChangedClients() {
@@ -377,11 +351,10 @@ func (manager *Manager) setResult(
err error, err error,
) { ) {
manager.mu.Lock() manager.mu.Lock()
defer manager.mu.Unlock()
if manager.devices[id] != state { if manager.devices[id] != state {
manager.mu.Unlock()
return return
} }
previousError := state.lastError
if snapshot != nil { if snapshot != nil {
value := *snapshot value := *snapshot
value.Warnings = append([]string(nil), snapshot.Warnings...) value.Warnings = append([]string(nil), snapshot.Warnings...)
@@ -393,19 +366,6 @@ func (manager *Manager) setResult(
} else { } else {
state.lastError = "" state.lastError = ""
} }
shouldLog := err != nil && manager.logger != nil && previousError != err.Error()
backend := state.backend
hardwareKind := state.candidate.HardwareKind
manager.mu.Unlock()
if shouldLog {
manager.logger.Warn(
"hardware operation failed",
"device_id", id,
"backend", backend,
"hardware_kind", hardwareKind,
"error", HardwareErrorDetail(err),
)
}
} }
func (manager *Manager) candidateFor(state *managedDevice) modem.Candidate { func (manager *Manager) candidateFor(state *managedDevice) modem.Candidate {
-75
View File
@@ -45,29 +45,6 @@ func TestManagerDiscoversWiFiCallingOnlyReaderWithoutATPort(t *testing.T) {
} }
} }
func TestManagerDiscoverReturnsOnlyCurrentlyPresentDevices(t *testing.T) {
manager, id := newStartedTestManager(t, nil)
if devices := manager.List(); len(devices) != 1 || devices[0].ID != id || !devices[0].Discovered {
t.Fatalf("initial devices = %#v", devices)
}
manager.discoverer = staticDiscoverer{}
present, err := manager.Discover(context.Background())
if err != nil {
t.Fatalf("Discover after unplug: %v", err)
}
if len(present) != 0 {
t.Fatalf("present devices after unplug = %#v, want none", present)
}
// The retained entry is still available to the configured-device dashboard,
// but is explicitly offline and cannot be offered by fresh discovery.
retained := manager.List()
if len(retained) != 1 || retained[0].ID != id || retained[0].Discovered {
t.Fatalf("retained devices after unplug = %#v", retained)
}
}
func TestManagerRefreshBuildsEC20Snapshot(t *testing.T) { func TestManagerRefreshBuildsEC20Snapshot(t *testing.T) {
client := &transcriptClient{steps: []clientStep{ client := &transcriptClient{steps: []clientStep{
{ {
@@ -164,58 +141,6 @@ func TestManagerRefreshBuildsEC20Snapshot(t *testing.T) {
client.assertDone(t) client.assertDone(t)
} }
func TestManagerRefreshReadsNativeWWANICCIDThroughQMIUIM(t *testing.T) {
client := &transcriptClient{steps: []clientStep{
{command: "ATI", response: okResponse("Qualcomm", "PCIe/MHI WWAN modem", "Revision: native-410")},
{command: "AT+CPIN?", response: okResponse("+CPIN: READY")},
{command: "AT+CCID", response: modem.Response{Final: "ERROR"}, err: errors.New("CCID unsupported")},
{command: "AT+QCCID", response: modem.Response{Final: "ERROR"}, err: errors.New("QCCID unsupported")},
{command: "AT+CIMI", response: okResponse("234159611274418")},
{command: "AT+CRSM=176,28486,0,0,17", response: okResponse(`+CRSM: 106,130,""`)},
{command: "AT+CRSM=192,28589,0,0,0", response: okResponse(`+CRSM: 106,130,""`)},
{command: "AT+CRSM=192,28478,0,0,0", response: okResponse(`+CRSM: 106,130,""`)},
{command: "AT+CRSM=192,28479,0,0,0", response: okResponse(`+CRSM: 106,130,""`)},
{command: "AT+CSQ", response: okResponse("+CSQ: 99,99")},
{command: `AT+QENG="servingcell"`, response: okResponse(`+QENG: "servingcell","SEARCH"`)},
{command: "AT+COPS?", response: okResponse("+COPS: 0")},
{command: "AT+CEREG?", response: okResponse("+CEREG: 0,2")},
{command: "AT+CFUN?", response: okResponse("+CFUN: 1")},
{command: "AT+CNUM", response: okResponse(`+CNUM: "","+8613800138000",145`)},
}}
manager, err := NewManager(Options{
Discoverer: staticDiscoverer{candidates: []modem.Candidate{{
ID: "mhi-wwan0",
Product: "PCIe/MHI WWAN modem",
QMIControl: "/dev/wwan0qmi0",
NetworkInterface: "wwan0",
ATPort: modem.Port{Path: "/dev/wwan0at0", Name: "wwan0at0", Role: modem.PortRoleAT},
}}},
Opener: &staticOpener{client: client},
})
if err != nil {
t.Fatal(err)
}
if err := manager.Start(context.Background()); err != nil {
t.Fatal(err)
}
t.Cleanup(func() { _ = manager.Stop(context.Background()) })
manager.qmiRadioOpener = func(context.Context, string) (qmiRadioSession, error) {
return &fakeQMIRadioSession{iccid: "89441000400316034372", imei: "861716070416510"}, nil
}
if err := manager.SetBackend("mhi-wwan0", "qmi"); err != nil {
t.Fatal(err)
}
snapshot, err := manager.Refresh(context.Background(), "mhi-wwan0")
if err != nil {
t.Fatalf("Refresh: %v", err)
}
if snapshot.ICCID != "89441000400316034372" || snapshot.IMEI != "861716070416510" || !snapshot.SIMReady {
t.Fatalf("native QMI identity = %#v", snapshot)
}
client.assertDone(t)
}
func TestParseSPNASCIIAndUCS2(t *testing.T) { func TestParseSPNASCIIAndUCS2(t *testing.T) {
if got := parseSPN(okResponse(`+CRSM: 144,0,"004C6562617261FFFFFFFFFFFFFFFFFFFF"`)); got != "Lebara" { if got := parseSPN(okResponse(`+CRSM: 144,0,"004C6562617261FFFFFFFFFFFFFFFFFFFF"`)); got != "Lebara" {
t.Fatalf("ASCII SPN = %q", got) t.Fatalf("ASCII SPN = %q", got)
-15
View File
@@ -34,9 +34,6 @@ func CardMCCMNCWithLength(imsi string, mncLength int) (mcc string, mnc string) {
strings.IndexFunc(digits, func(r rune) bool { return !unicode.IsDigit(r) }) >= 0 { strings.IndexFunc(digits, func(r rune) bool { return !unicode.IsDigit(r) }) >= 0 {
return "", "" return "", ""
} }
if IsPlaceholderIMSI(digits) {
return "", ""
}
mcc = digits[:3] mcc = digits[:3]
mnc = digits[3:] mnc = digits[3:]
if mncLength != 2 && mncLength != 3 { if mncLength != 2 && mncLength != 3 {
@@ -48,18 +45,6 @@ func CardMCCMNCWithLength(imsi string, mncLength int) (mcc string, mnc string) {
return mcc, mnc return mcc, mnc
} }
// IsPlaceholderIMSI recognizes an unprovisioned/test identity structurally,
// without tying the decision to a vendor-specific hard-coded ICCID. A valid
// subscriber identity cannot consist of an MCC followed only by zeroes; white
// cards commonly ship in exactly that state before a real profile is enabled.
func IsPlaceholderIMSI(imsi string) bool {
digits := strings.TrimSpace(imsi)
if len(digits) < 10 || strings.IndexFunc(digits, func(r rune) bool { return !unicode.IsDigit(r) }) >= 0 {
return false
}
return strings.Trim(digits[3:], "0") == ""
}
// RegionBlockReason returns a human-readable reason when the SIM identified by // RegionBlockReason returns a human-readable reason when the SIM identified by
// the IMSI belongs to a blocked region. It returns an empty string when the // the IMSI belongs to a blocked region. It returns an empty string when the
// card is allowed or when the IMSI is unavailable: only a confirmed blocked // card is allowed or when the IMSI is unavailable: only a confirmed blocked
-16
View File
@@ -33,22 +33,6 @@ func TestCardMCCMNC(t *testing.T) {
} }
} }
func TestPlaceholderIMSIIsNotTreatedAsARealCarrier(t *testing.T) {
t.Parallel()
if !IsPlaceholderIMSI("460000000000000") {
t.Fatal("all-zero subscriber identity should be treated as an unprovisioned placeholder")
}
if IsPlaceholderIMSI("460001234567890") {
t.Fatal("real subscriber identity was classified as a placeholder")
}
if mcc, mnc := CardMCCMNC("460000000000000"); mcc != "" || mnc != "" {
t.Fatalf("placeholder MCC/MNC = %q/%q, want empty", mcc, mnc)
}
if reason := RegionBlockReason("460000000000000"); reason != "" {
t.Fatalf("placeholder identity was region-blocked: %s", reason)
}
}
func TestRegionBlockReason(t *testing.T) { func TestRegionBlockReason(t *testing.T) {
t.Parallel() t.Parallel()
for _, imsi := range []string{"460001234567890", "461001234567890"} { for _, imsi := range []string{"460001234567890", "461001234567890"} {
-702
View File
@@ -1,702 +0,0 @@
package device
import (
"context"
"errors"
"fmt"
"path/filepath"
"strconv"
"strings"
"time"
"github.com/iniwex5/quectel-qmi-go/pkg/qmi"
"vocat/internal/modem"
)
// nativeQMIRegistrationSession is the QMI NAS control surface used by
// OpenStick WWAN devices. It deliberately stays separate from
// qmiRadioSession so AT-only devices and existing radio-control fakes do not
// acquire a mandatory NAS implementation.
type nativeQMIRegistrationSession interface {
qmiRadioSession
GetServingSystem(context.Context) (*qmi.ServingSystem, error)
GetSystemSelectionPreference(context.Context) (*qmi.SystemSelectionPreference, error)
SetSystemSelectionPreference(context.Context, qmi.SystemSelectionPreference) error
InitiateNetworkRegister(context.Context, qmi.NASInitiateNetworkRegisterRequest) error
ForceNetworkSearch(context.Context) error
AttachDetach(context.Context, bool) error
}
const (
nativeQMIRegistrationPollInterval = 2 * time.Second
nativeQMIRegistrationMaxAttempts = 45
nativeQMIRegistrationRadioCycleAfterAttempts = 30
nativeQMIRegistrationUnsupportedCycleAfterTries = 3
nativeQMIRegistrationBackgroundTimeout = 45 * time.Second
)
func isNativeQMICandidate(candidate modem.Candidate) bool {
deviceID := strings.TrimSpace(candidate.ID)
control := strings.TrimSpace(candidate.QMIControl)
return nativeQMIControlMatches(deviceID, control)
}
func nativeQMIControlMatches(deviceID, control string) bool {
deviceID = strings.TrimSpace(deviceID)
control = strings.TrimSpace(control)
if deviceID == "" || control == "" {
return false
}
prefix := ""
switch {
case strings.HasPrefix(deviceID, "wwan"):
prefix = deviceID + "qmi"
case strings.HasPrefix(deviceID, "mhi-wwan"):
prefix = "wwan" + strings.TrimPrefix(deviceID, "mhi-wwan") + "qmi"
default:
return false
}
return strings.HasPrefix(filepath.Base(control), prefix)
}
func (manager *Manager) openNativeQMIRegistration(
ctx context.Context,
candidate modem.Candidate,
) (nativeQMIRegistrationSession, error) {
if manager == nil || manager.qmiRadioOpener == nil {
return nil, errors.New("QMI NAS registration is unavailable")
}
control := strings.TrimSpace(candidate.QMIControl)
if control == "" {
return nil, errors.New("QMI NAS registration control device is unavailable")
}
session, err := manager.qmiRadioOpener(ctx, control)
if err != nil {
return nil, err
}
nas, ok := session.(nativeQMIRegistrationSession)
if !ok {
_ = session.Close()
return nil, errors.New("QMI radio session does not expose NAS registration control")
}
return nas, nil
}
// startNativeQMIRegistrationReconcile continues registration after a radio
// transition. Bringing DMS online only proves that the RF switch completed;
// NAS may still report searching or PS detached seconds later, so the
// registration sequence continues after SetFlight returns. The per-device
// guard prevents repeated UI/poll callbacks from opening competing sessions.
func (manager *Manager) startNativeQMIRegistrationReconcile(id string) bool {
if manager == nil {
return false
}
state, err := manager.lookup(id)
if err != nil {
return false
}
candidate := manager.candidateFor(state)
if !isNativeQMICandidate(candidate) {
return false
}
manager.nativeQMIRegistrationMu.Lock()
if _, running := manager.nativeQMIRegistrationInFlight[id]; running {
manager.nativeQMIRegistrationMu.Unlock()
return false
}
manager.nativeQMIRegistrationInFlight[id] = struct{}{}
manager.nativeQMIRegistrationMu.Unlock()
go func() {
defer func() {
manager.nativeQMIRegistrationMu.Lock()
delete(manager.nativeQMIRegistrationInFlight, id)
manager.nativeQMIRegistrationMu.Unlock()
}()
ctx, cancel := context.WithTimeout(context.Background(), nativeQMIRegistrationBackgroundTimeout)
defer cancel()
_, _ = manager.ReRegisterOperator(ctx, id)
}()
return true
}
func qmiOperatorSelectionFromPreference(pref *qmi.SystemSelectionPreference) (OperatorSelection, error) {
if pref == nil {
return OperatorSelection{}, errors.New("QMI returned an empty system-selection preference")
}
accessTechnology := qmiAccessTechnologyFromModePreference(pref.ModePreference)
if pref.HasManualNetworkSelection {
mcc := fmt.Sprintf("%03d", pref.ManualNetworkSelection.MCC)
mncWidth := 2
if pref.ManualNetworkSelection.IncludesPCSDigit {
mncWidth = 3
}
mnc := fmt.Sprintf("%0*d", mncWidth, pref.ManualNetworkSelection.MNC)
return OperatorSelection{
Mode: 1,
Format: 2,
Operator: mcc + mnc,
AccessTechnology: accessTechnology,
}, nil
}
return OperatorSelection{Mode: 0, AccessTechnology: accessTechnology}, nil
}
func qmiManualRegisterRequest(
plmn string,
accessTechnologyValue *int,
) (qmi.NASInitiateNetworkRegisterRequest, error) {
mcc, mnc, includesPCSDigit, err := qmiPLMNParts(plmn)
if err != nil {
return qmi.NASInitiateNetworkRegisterRequest{}, err
}
rat := uint8(0)
if accessTechnologyValue != nil {
if *accessTechnologyValue < 0 || *accessTechnologyValue > 9 {
return qmi.NASInitiateNetworkRegisterRequest{}, errors.New("invalid operator access technology")
}
rat = qmiRATFromATCode(*accessTechnologyValue)
if rat == 0 {
return qmi.NASInitiateNetworkRegisterRequest{}, errors.New("unsupported operator access technology")
}
}
return qmi.NASInitiateNetworkRegisterRequest{
Mode: qmi.NASNetworkRegisterManual,
MCC: mcc,
MNC: mnc,
IncludesPCSDigit: includesPCSDigit,
RadioAccessTech: rat,
ChangeDuration: qmi.NASChangeDurationPermanent,
HasChangeDuration: true,
}, nil
}
func qmiPLMNParts(plmn string) (mcc, mnc uint16, includesPCSDigit bool, err error) {
plmn = strings.TrimSpace(plmn)
if !decimalPLMN(plmn) {
return 0, 0, false, errors.New("operator PLMN must contain 5 or 6 digits")
}
mccValue, parseErr := strconv.ParseUint(plmn[:3], 10, 16)
if parseErr != nil {
return 0, 0, false, fmt.Errorf("parse operator MCC: %w", parseErr)
}
mncValue, parseErr := strconv.ParseUint(plmn[3:], 10, 16)
if parseErr != nil {
return 0, 0, false, fmt.Errorf("parse operator MNC: %w", parseErr)
}
return uint16(mccValue), uint16(mncValue), len(plmn) == 6, nil
}
func qmiManualSelectionPreference(plmn string) (qmi.SystemSelectionPreference, qmi.ManualNetworkSelection, error) {
return qmiManualSelectionPreferenceWithRAT(plmn, nil)
}
func qmiManualSelectionPreferenceWithRAT(
plmn string,
accessTechnologyValue *int,
) (qmi.SystemSelectionPreference, qmi.ManualNetworkSelection, error) {
mcc, mnc, includesPCSDigit, err := qmiPLMNParts(plmn)
if err != nil {
return qmi.SystemSelectionPreference{}, qmi.ManualNetworkSelection{}, err
}
selection := qmi.ManualNetworkSelection{
MCC: mcc,
MNC: mnc,
IncludesPCSDigit: includesPCSDigit,
}
pref := qmi.SystemSelectionPreference{
NetworkSelectionPreference: qmi.NASNetworkSelectionManual,
HasNetworkSelectionPreference: true,
ManualNetworkSelection: selection,
HasManualNetworkSelection: true,
ChangeDuration: qmi.NASChangeDurationPermanent,
HasChangeDuration: true,
}
if accessTechnologyValue != nil {
modePreference, ok := qmiModePreferenceFromATCode(*accessTechnologyValue)
if !ok {
return qmi.SystemSelectionPreference{}, qmi.ManualNetworkSelection{}, errors.New("unsupported operator access technology")
}
pref.ModePreference = modePreference
pref.HasModePreference = true
}
return pref, selection, nil
}
func qmiRATFromATCode(value int) uint8 {
switch value {
case 0, 3: // GSM / EDGE
return 0x04
case 2, 4, 5, 6: // UTRAN / HSDPA / HSUPA / HSPA
return 0x05
case 7: // LTE
return 0x08
case 9: // NR5G
return 0x0C
default:
return 0
}
}
func qmiModePreferenceFromATCode(value int) (uint16, bool) {
switch value {
case 0, 3: // GSM / EDGE
return qmi.NASRatModePreferenceGSM, true
case 2, 4, 5, 6: // UTRAN / HSDPA / HSUPA / HSPA
return qmi.NASRatModePreferenceUMTS, true
case 7: // LTE
return qmi.NASRatModePreferenceLTE, true
case 9: // NR5G
return qmi.NASRatModePreferenceNR5G, true
default:
return 0, false
}
}
func qmiRATFromServingRadioInterface(value uint8) uint8 {
switch value {
case 4, 5, 8:
return value
case 10: // NAS serving-system NR5G value
return 0x0C
default:
return 0
}
}
func qmiRATFromModePreference(value uint16) uint8 {
switch {
case value&qmi.NASRatModePreferenceNR5G != 0:
return 0x0C
case value&qmi.NASRatModePreferenceLTE != 0:
return 0x08
case value&qmi.NASRatModePreferenceUMTS != 0:
return 0x05
case value&qmi.NASRatModePreferenceGSM != 0:
return 0x04
default:
return 0
}
}
func qmiAccessTechnologyFromModePreference(value uint16) string {
switch {
case value&qmi.NASRatModePreferenceNR5G != 0:
return "NR5G"
case value&qmi.NASRatModePreferenceLTE != 0:
return "LTE"
case value&qmi.NASRatModePreferenceUMTS != 0:
return "UTRAN"
case value&qmi.NASRatModePreferenceGSM != 0:
return "GSM"
default:
return ""
}
}
func qmiRegistrationRequestAutomatic() qmi.NASInitiateNetworkRegisterRequest {
return qmi.NASInitiateNetworkRegisterRequest{
Mode: qmi.NASNetworkRegisterAutomatic,
ChangeDuration: qmi.NASChangeDurationPermanent,
HasChangeDuration: true,
}
}
func qmiSelectionAutomaticPreference() qmi.SystemSelectionPreference {
return qmi.SystemSelectionPreference{
NetworkSelectionPreference: qmi.NASNetworkSelectionAutomatic,
HasNetworkSelectionPreference: true,
ChangeDuration: qmi.NASChangeDurationPermanent,
HasChangeDuration: true,
}
}
func isUnsupportedQMIRegistrationCommand(err error, messageID uint16) bool {
qmiErr := qmi.GetQMIError(err)
if qmiErr == nil || qmiErr.Service != qmi.ServiceNAS || qmiErr.MessageID != messageID {
return false
}
switch qmiErr.ErrorCode {
case qmi.QMIErrMalformedMsg,
qmi.QMIErrInvalidRegisterAction,
qmi.QMIErrNoEffect,
qmi.QMIErrNotSupported,
qmi.QMIErrInvalidQmiCmd,
qmi.QMIErrOpDeviceUnsupported:
return true
default:
return false
}
}
func isUnsupportedQMIForceSearch(err error) bool {
qmiErr := qmi.GetQMIError(err)
if qmiErr == nil || qmiErr.Service != qmi.ServiceNAS || qmiErr.MessageID != qmi.NASForceNetworkSearch {
return false
}
return qmiErr.ErrorCode == qmi.QMIErrNotSupported ||
qmiErr.ErrorCode == qmi.QMIErrInvalidQmiCmd ||
qmiErr.ErrorCode == qmi.QMIErrOpDeviceUnsupported
}
func isUnsupportedQMISelectionCommand(err error) bool {
qmiErr := qmi.GetQMIError(err)
if qmiErr == nil || qmiErr.Service != qmi.ServiceNAS || qmiErr.MessageID != qmi.NASSetSystemSelectionPreference {
return false
}
switch qmiErr.ErrorCode {
case qmi.QMIErrMalformedMsg,
qmi.QMIErrInvalidRegisterAction,
qmi.QMIErrNoEffect,
qmi.QMIErrNotSupported,
qmi.QMIErrInvalidQmiCmd,
qmi.QMIErrOpDeviceUnsupported:
return true
default:
return false
}
}
func qmiRegistrationStateRegistered(state qmi.RegistrationState) bool {
return state == qmi.RegStateRegistered || state == qmi.RegStateRoaming
}
func nativeQMIRegistrationRadioCycleThreshold(forceSearchUnsupported bool) int {
if forceSearchUnsupported {
return nativeQMIRegistrationUnsupportedCycleAfterTries
}
return nativeQMIRegistrationRadioCycleAfterAttempts
}
// triggerNativeQMIManualRegistration applies the manual preference that was
// written by the caller and starts a fresh NAS search. On the OpenStick 410
// firmware, NAS_FORCE_NETWORK_SEARCH is the reliable trigger; sending
// NAS_INITIATE_NETWORK_REGISTER with RadioAccessTech=0 is rejected as an
// invalid profile. Older firmware may not expose force-search, so fall back
// to an explicit RAT (or the current serving RAT) when that command is not
// supported.
func triggerNativeQMIManualRegistration(
ctx context.Context,
session nativeQMIRegistrationSession,
request *qmi.NASInitiateNetworkRegisterRequest,
serving *qmi.ServingSystem,
) (forceSearchIssued bool, forceSearchUnsupported bool, err error) {
if request == nil {
return false, false, errors.New("QMI manual registration request is unavailable")
}
if err := session.ForceNetworkSearch(ctx); err == nil {
return true, false, nil
} else if !isUnsupportedQMIForceSearch(err) {
return false, false, fmt.Errorf("force QMI network search: %w", err)
}
forceSearchUnsupported = true
if request.RadioAccessTech == 0 && serving != nil {
request.RadioAccessTech = qmiRATFromServingRadioInterface(serving.RadioInterface)
}
if request.RadioAccessTech == 0 {
return false, true, errors.New("QMI manual registration requires a supported radio access technology")
}
if err := session.InitiateNetworkRegister(ctx, *request); err != nil {
return false, true, fmt.Errorf("initiate manual QMI network registration: %w", err)
}
return false, true, nil
}
// ensureNativeQMIRegistration runs the NAS registration sequence used on
// OpenStick. The modem's AT+COPS surface on this firmware only changes
// presentation; it does not reliably drive this NAS state machine.
func ensureNativeQMIRegistration(
ctx context.Context,
session nativeQMIRegistrationSession,
request qmi.NASInitiateNetworkRegisterRequest,
setAutomatic bool,
) error {
return ensureNativeQMIRegistrationForTarget(ctx, session, request, setAutomatic, nil)
}
// ensureNativeQMIRegistrationForTarget is the manual-lock variant of the
// registration sequence. A modem can remain registered on the old PLMN while
// it processes a new manual request, so a successful registered/PS-attached
// state is only authoritative when it is on the requested PLMN.
func ensureNativeQMIRegistrationForTarget(
ctx context.Context,
session nativeQMIRegistrationSession,
request qmi.NASInitiateNetworkRegisterRequest,
setAutomatic bool,
target *qmi.ManualNetworkSelection,
) error {
if ctx == nil {
ctx = context.Background()
}
if session == nil {
return errors.New("QMI NAS registration session is unavailable")
}
if request.Mode == 0 {
request = qmiRegistrationRequestAutomatic()
}
mode, err := session.GetOperatingMode(ctx)
if err != nil {
return fmt.Errorf("read QMI operating mode: %w", err)
}
if mode == qmi.ModeLowPower || mode == qmi.ModeOffline || mode == qmi.ModeShutdown || mode == qmi.ModeReset {
if err := session.SetOperatingMode(ctx, qmi.ModeOnline); err != nil {
return fmt.Errorf("restore QMI online mode: %w", err)
}
if err := waitNativeQMIRegistration(ctx); err != nil {
return fmt.Errorf("wait for QMI online mode: %w", err)
}
mode, err = session.GetOperatingMode(ctx)
if err != nil {
return fmt.Errorf("recheck QMI operating mode: %w", err)
}
if mode == qmi.ModeLowPower || mode == qmi.ModeOffline || mode == qmi.ModeShutdown || mode == qmi.ModeReset {
return fmt.Errorf("QMI operating mode remained non-online after recovery: %d", mode)
}
}
if setAutomatic {
if err := session.SetSystemSelectionPreference(ctx, qmiSelectionAutomaticPreference()); err != nil {
// Some OpenStick firmware accepts the preference but reports an
// unsupported result for an optional NAS TLV. The explicit NAS register
// below remains the authoritative trigger.
if !isUnsupportedQMISelectionCommand(err) {
return fmt.Errorf("restore automatic QMI NAS selection: %w", err)
}
}
}
registerIssued := false
forceSearchIssued := false
radioCycleIssued := false
forceSearchUnsupported := false
manualTarget := target != nil && request.Mode == qmi.NASNetworkRegisterManual
for attempt := 1; attempt <= nativeQMIRegistrationMaxAttempts; attempt++ {
serving, servingErr := session.GetServingSystem(ctx)
if servingErr != nil {
if err := waitNativeQMIRegistration(ctx); err != nil {
return fmt.Errorf("read QMI serving system: %w", servingErr)
}
continue
}
if serving == nil {
return errors.New("QMI serving system returned no data")
}
if qmiRegistrationStateRegistered(serving.RegistrationState) {
if target == nil || qmiServingSystemMatchesTarget(serving, *target) {
if serving.PSAttached {
return nil
}
if err := session.AttachDetach(ctx, true); err != nil {
return fmt.Errorf("attach QMI packet service: %w", err)
}
} else if !registerIssued {
if manualTarget {
var triggerErr error
forceSearchIssued, forceSearchUnsupported, triggerErr = triggerNativeQMIManualRegistration(
ctx, session, &request, serving,
)
if triggerErr != nil {
return triggerErr
}
} else if err := session.InitiateNetworkRegister(ctx, request); err != nil {
return fmt.Errorf("initiate QMI network registration: %w", err)
}
registerIssued = true
}
} else if serving.RegistrationState == qmi.RegStateDenied {
return errors.New("QMI network registration was denied")
} else if !registerIssued {
if manualTarget {
var triggerErr error
forceSearchIssued, forceSearchUnsupported, triggerErr = triggerNativeQMIManualRegistration(
ctx, session, &request, serving,
)
if triggerErr != nil {
return triggerErr
}
} else if err := session.InitiateNetworkRegister(ctx, request); err != nil {
if !(setAutomatic && isUnsupportedQMIRegistrationCommand(err, qmi.NASInitiateNetworkRegister)) {
return fmt.Errorf("initiate QMI network registration: %w", err)
}
}
registerIssued = true
}
searching := serving.RegistrationState == qmi.RegStateSearching
if target != nil && qmiRegistrationStateRegistered(serving.RegistrationState) && !qmiServingSystemMatchesTarget(serving, *target) {
searching = true
}
if searching && registerIssued && !forceSearchIssued && !forceSearchUnsupported && attempt >= 2 {
forceSearchIssued = true
if err := session.ForceNetworkSearch(ctx); err != nil {
if isUnsupportedQMIForceSearch(err) {
forceSearchUnsupported = true
} else {
return fmt.Errorf("force QMI network search: %w", err)
}
}
}
radioCycleAfter := nativeQMIRegistrationRadioCycleThreshold(forceSearchUnsupported)
if searching && registerIssued && !radioCycleIssued && attempt >= radioCycleAfter {
radioCycleIssued = true
if err := session.SetOperatingMode(ctx, qmi.ModeLowPower); err == nil {
_ = waitNativeQMIRegistration(ctx)
_ = session.SetOperatingMode(ctx, qmi.ModeOnline)
registerIssued = false
}
}
if err := waitNativeQMIRegistration(ctx); err != nil {
return err
}
}
return fmt.Errorf("QMI network registration/PS attach timed out after %d attempts", nativeQMIRegistrationMaxAttempts)
}
func qmiServingSystemMatchesTarget(serving *qmi.ServingSystem, target qmi.ManualNetworkSelection) bool {
return serving != nil && serving.MCC == target.MCC && serving.MNC == target.MNC
}
func waitNativeQMIRegistration(ctx context.Context) error {
timer := time.NewTimer(nativeQMIRegistrationPollInterval)
defer timer.Stop()
select {
case <-ctx.Done():
return ctx.Err()
case <-timer.C:
return nil
}
}
func (manager *Manager) nativeQMIOperatorSelectionLocked(
ctx context.Context,
candidate modem.Candidate,
) (OperatorSelection, error) {
session, err := manager.openNativeQMIRegistration(ctx, candidate)
if err != nil {
return OperatorSelection{}, fmt.Errorf("open QMI NAS operator selection: %w", err)
}
defer session.Close()
pref, err := session.GetSystemSelectionPreference(ctx)
if err != nil {
return OperatorSelection{}, fmt.Errorf("read QMI system selection preference: %w", err)
}
return qmiOperatorSelectionFromPreference(pref)
}
func (manager *Manager) setNativeQMIOperatorSelectionLocked(
ctx context.Context,
candidate modem.Candidate,
automatic bool,
plmn string,
accessTechnologyValue *int,
) (OperatorSelection, error) {
session, err := manager.openNativeQMIRegistration(ctx, candidate)
if err != nil {
return OperatorSelection{}, fmt.Errorf("open QMI NAS operator selection: %w", err)
}
defer session.Close()
if automatic {
request := qmiRegistrationRequestAutomatic()
if err := ensureNativeQMIRegistration(ctx, session, request, true); err != nil {
return OperatorSelection{}, err
}
pref, err := session.GetSystemSelectionPreference(ctx)
if err != nil {
return OperatorSelection{}, fmt.Errorf("read QMI system selection preference: %w", err)
}
return qmiOperatorSelectionFromPreference(pref)
}
request, err := qmiManualRegisterRequest(plmn, accessTechnologyValue)
if err != nil {
return OperatorSelection{}, err
}
preference, target, err := qmiManualSelectionPreferenceWithRAT(plmn, accessTechnologyValue)
if err != nil {
return OperatorSelection{}, err
}
// InitiateNetworkRegister is only a one-shot trigger on this firmware. The
// manual preference must be written separately or the next reconcile will
// read automatic selection and undo the requested lock.
if err := session.SetSystemSelectionPreference(ctx, preference); err != nil {
return OperatorSelection{}, fmt.Errorf("set manual QMI network selection: %w", err)
}
if err := ensureNativeQMIRegistrationForTarget(ctx, session, request, false, &target); err != nil {
manager.restoreNativeQMISelectionAfterFailure(session, candidate.ID)
return OperatorSelection{}, err
}
actual, err := session.GetSystemSelectionPreference(ctx)
if err != nil {
manager.restoreNativeQMISelectionAfterFailure(session, candidate.ID)
return OperatorSelection{}, fmt.Errorf("verify manual QMI network selection: %w", err)
}
if actual == nil || !actual.HasManualNetworkSelection || actual.ManualNetworkSelection != target {
manager.restoreNativeQMISelectionAfterFailure(session, candidate.ID)
return OperatorSelection{}, fmt.Errorf("modem did not retain manual PLMN %s", strings.TrimSpace(plmn))
}
return qmiOperatorSelectionFromPreference(actual)
}
// restoreNativeQMISelectionAfterFailure prevents a failed manual lock from
// leaving the modem in a searching/manual state. The caller may already have
// exhausted its request deadline, so rollback uses a fresh bounded context and
// schedules the normal background reconcile as a second line of defence.
func (manager *Manager) restoreNativeQMISelectionAfterFailure(
session nativeQMIRegistrationSession,
deviceID string,
) {
if manager == nil || session == nil {
return
}
rollbackCtx, cancel := context.WithTimeout(context.Background(), manager.longTimeout)
defer cancel()
_ = session.SetSystemSelectionPreference(rollbackCtx, qmiSelectionAutomaticPreference())
_ = session.InitiateNetworkRegister(rollbackCtx, qmiRegistrationRequestAutomatic())
_ = session.ForceNetworkSearch(rollbackCtx)
if strings.TrimSpace(deviceID) != "" {
manager.startNativeQMIRegistrationReconcile(deviceID)
}
}
func (manager *Manager) reRegisterNativeQMIOperatorLocked(
ctx context.Context,
candidate modem.Candidate,
) (OperatorSelection, error) {
session, err := manager.openNativeQMIRegistration(ctx, candidate)
if err != nil {
return OperatorSelection{}, fmt.Errorf("open QMI NAS re-registration: %w", err)
}
defer session.Close()
pref, err := session.GetSystemSelectionPreference(ctx)
if err != nil {
return OperatorSelection{}, fmt.Errorf("read QMI system selection preference: %w", err)
}
request := qmiRegistrationRequestAutomatic()
setAutomatic := true
selection := OperatorSelection{Mode: 0}
if pref != nil && pref.HasManualNetworkSelection {
setAutomatic = false
request.Mode = qmi.NASNetworkRegisterManual
request.MCC = pref.ManualNetworkSelection.MCC
request.MNC = pref.ManualNetworkSelection.MNC
request.IncludesPCSDigit = pref.ManualNetworkSelection.IncludesPCSDigit
request.ChangeDuration = qmi.NASChangeDurationPermanent
request.HasChangeDuration = true
if pref.HasModePreference {
request.RadioAccessTech = qmiRATFromModePreference(pref.ModePreference)
}
selection, err = qmiOperatorSelectionFromPreference(pref)
if err != nil {
return OperatorSelection{}, err
}
}
var target *qmi.ManualNetworkSelection
if pref != nil && pref.HasManualNetworkSelection {
target = &pref.ManualNetworkSelection
}
if err := ensureNativeQMIRegistrationForTarget(ctx, session, request, setAutomatic, target); err != nil {
return OperatorSelection{}, err
}
return selection, nil
}
@@ -1,271 +0,0 @@
package device
import (
"context"
"testing"
"github.com/iniwex5/quectel-qmi-go/pkg/qmi"
"vocat/internal/modem"
)
type fakeNativeQMIRegistrationSession struct {
mode qmi.OperatingMode
serving []*qmi.ServingSystem
selection *qmi.SystemSelectionPreference
setModes []qmi.OperatingMode
setPreferences []qmi.SystemSelectionPreference
registerRequests []qmi.NASInitiateNetworkRegisterRequest
forceSearches int
forceSearchErr error
registerErr error
attachRequests []bool
closeCount int
}
func (session *fakeNativeQMIRegistrationSession) GetOperatingMode(context.Context) (qmi.OperatingMode, error) {
return session.mode, nil
}
func (session *fakeNativeQMIRegistrationSession) SetOperatingMode(_ context.Context, mode qmi.OperatingMode) error {
session.mode = mode
session.setModes = append(session.setModes, mode)
return nil
}
func (session *fakeNativeQMIRegistrationSession) Close() error {
session.closeCount++
return nil
}
func (session *fakeNativeQMIRegistrationSession) GetServingSystem(context.Context) (*qmi.ServingSystem, error) {
if len(session.serving) == 0 {
return &qmi.ServingSystem{RegistrationState: qmi.RegStateSearching}, nil
}
current := session.serving[0]
if len(session.serving) > 1 {
session.serving = session.serving[1:]
}
return current, nil
}
func (session *fakeNativeQMIRegistrationSession) GetSystemSelectionPreference(context.Context) (*qmi.SystemSelectionPreference, error) {
if session.selection == nil {
return &qmi.SystemSelectionPreference{}, nil
}
return session.selection, nil
}
func (session *fakeNativeQMIRegistrationSession) SetSystemSelectionPreference(_ context.Context, pref qmi.SystemSelectionPreference) error {
session.selection = &pref
session.setPreferences = append(session.setPreferences, pref)
return nil
}
func (session *fakeNativeQMIRegistrationSession) InitiateNetworkRegister(_ context.Context, req qmi.NASInitiateNetworkRegisterRequest) error {
session.registerRequests = append(session.registerRequests, req)
return session.registerErr
}
func (session *fakeNativeQMIRegistrationSession) ForceNetworkSearch(context.Context) error {
session.forceSearches++
return session.forceSearchErr
}
func (session *fakeNativeQMIRegistrationSession) AttachDetach(_ context.Context, attached bool) error {
session.attachRequests = append(session.attachRequests, attached)
return nil
}
func TestEnsureNativeQMIRegistrationDrivesNASSequence(t *testing.T) {
session := &fakeNativeQMIRegistrationSession{
mode: qmi.ModeLowPower,
serving: []*qmi.ServingSystem{
{RegistrationState: qmi.RegStateSearching},
{RegistrationState: qmi.RegStateSearching},
{RegistrationState: qmi.RegStateRegistered, PSAttached: false},
{RegistrationState: qmi.RegStateRegistered, PSAttached: true},
},
}
if err := ensureNativeQMIRegistration(context.Background(), session, qmiRegistrationRequestAutomatic(), true); err != nil {
t.Fatalf("ensure native QMI registration: %v", err)
}
if len(session.setModes) != 1 || session.setModes[0] != qmi.ModeOnline {
t.Fatalf("operating mode writes = %#v, want [online]", session.setModes)
}
if len(session.setPreferences) != 1 || !session.setPreferences[0].HasNetworkSelectionPreference ||
session.setPreferences[0].NetworkSelectionPreference != qmi.NASNetworkSelectionAutomatic {
t.Fatalf("selection writes = %#v, want automatic", session.setPreferences)
}
if len(session.registerRequests) != 1 || session.registerRequests[0].Mode != qmi.NASNetworkRegisterAutomatic {
t.Fatalf("registration requests = %#v, want one automatic request", session.registerRequests)
}
if session.forceSearches != 1 {
t.Fatalf("force-search count = %d, want 1", session.forceSearches)
}
if len(session.attachRequests) != 1 || !session.attachRequests[0] {
t.Fatalf("attach requests = %#v, want one attach", session.attachRequests)
}
}
func TestQMIManualRegisterRequestMapsPLMNAndRAT(t *testing.T) {
rat := 7
request, err := qmiManualRegisterRequest("46001", &rat)
if err != nil {
t.Fatalf("manual request: %v", err)
}
if request.Mode != qmi.NASNetworkRegisterManual || request.MCC != 460 || request.MNC != 1 ||
request.IncludesPCSDigit || request.RadioAccessTech != 0x08 || !request.HasChangeDuration ||
request.ChangeDuration != qmi.NASChangeDurationPermanent {
t.Fatalf("manual request = %#v", request)
}
}
func TestQMIManualSelectionPreferenceMapsPLMN(t *testing.T) {
pref, selection, err := qmiManualSelectionPreference("46001")
if err != nil {
t.Fatalf("manual preference: %v", err)
}
if pref.NetworkSelectionPreference != qmi.NASNetworkSelectionManual ||
!pref.HasNetworkSelectionPreference || !pref.HasManualNetworkSelection ||
!pref.HasChangeDuration || pref.ChangeDuration != qmi.NASChangeDurationPermanent {
t.Fatalf("manual preference = %#v", pref)
}
if selection.MCC != 460 || selection.MNC != 1 || selection.IncludesPCSDigit {
t.Fatalf("manual selection = %#v", selection)
}
}
func TestQMIManualSelectionPreferenceMapsRAT(t *testing.T) {
rat := 7
pref, _, err := qmiManualSelectionPreferenceWithRAT("46001", &rat)
if err != nil {
t.Fatalf("manual preference: %v", err)
}
if !pref.HasModePreference || pref.ModePreference != qmi.NASRatModePreferenceLTE {
t.Fatalf("manual preference mode = %#v, want LTE mode preference", pref)
}
}
func TestQMIManualRegisterRequestRejectsUnknownRAT(t *testing.T) {
rat := 1
if _, err := qmiManualRegisterRequest("46001", &rat); err == nil {
t.Fatal("manual request with unknown RAT must fail")
}
}
func TestEnsureNativeQMIRegistrationWaitsForManualTarget(t *testing.T) {
session := &fakeNativeQMIRegistrationSession{
mode: qmi.ModeOnline,
serving: []*qmi.ServingSystem{
{RegistrationState: qmi.RegStateRegistered, PSAttached: true, MCC: 460, MNC: 0},
{RegistrationState: qmi.RegStateSearching},
{RegistrationState: qmi.RegStateRegistered, PSAttached: false, MCC: 460, MNC: 1},
{RegistrationState: qmi.RegStateRegistered, PSAttached: true, MCC: 460, MNC: 1},
},
}
request, err := qmiManualRegisterRequest("46001", nil)
if err != nil {
t.Fatalf("manual request: %v", err)
}
target := qmi.ManualNetworkSelection{MCC: 460, MNC: 1}
if err := ensureNativeQMIRegistrationForTarget(context.Background(), session, request, false, &target); err != nil {
t.Fatalf("ensure manual registration: %v", err)
}
if len(session.registerRequests) != 0 {
t.Fatalf("registration requests = %#v, want force-search-only manual trigger", session.registerRequests)
}
if session.forceSearches != 1 {
t.Fatalf("force-search count = %d, want 1", session.forceSearches)
}
if len(session.attachRequests) != 1 || !session.attachRequests[0] {
t.Fatalf("attach requests = %#v, want one attach", session.attachRequests)
}
}
func TestEnsureNativeQMIRegistrationFallsBackWhenForceSearchUnsupported(t *testing.T) {
session := &fakeNativeQMIRegistrationSession{
serving: []*qmi.ServingSystem{
{RegistrationState: qmi.RegStateRegistered, PSAttached: true, RadioInterface: 8, MCC: 460, MNC: 0},
{RegistrationState: qmi.RegStateSearching},
{RegistrationState: qmi.RegStateRegistered, PSAttached: false, MCC: 460, MNC: 1},
{RegistrationState: qmi.RegStateRegistered, PSAttached: true, MCC: 460, MNC: 1},
},
forceSearchErr: &qmi.QMIError{
Service: qmi.ServiceNAS, MessageID: qmi.NASForceNetworkSearch,
Result: 0x0001, ErrorCode: qmi.QMIErrNotSupported,
},
}
request, err := qmiManualRegisterRequest("46001", nil)
if err != nil {
t.Fatalf("manual request: %v", err)
}
target := qmi.ManualNetworkSelection{MCC: 460, MNC: 1}
if err := ensureNativeQMIRegistrationForTarget(context.Background(), session, request, false, &target); err != nil {
t.Fatalf("ensure manual registration: %v", err)
}
if len(session.registerRequests) != 1 || session.registerRequests[0].RadioAccessTech != 8 {
t.Fatalf("registration requests = %#v, want one LTE fallback request", session.registerRequests)
}
if session.forceSearches != 1 {
t.Fatalf("force-search count = %d, want one unsupported attempt", session.forceSearches)
}
}
func TestNativeQMIRegistrationCyclesEarlyWhenForceSearchUnsupported(t *testing.T) {
if got := nativeQMIRegistrationRadioCycleThreshold(true); got != 3 {
t.Fatalf("unsupported force-search threshold = %d, want 3", got)
}
if got := nativeQMIRegistrationRadioCycleThreshold(false); got != 30 {
t.Fatalf("supported force-search threshold = %d, want 30", got)
}
}
func TestIsNativeQMICandidateRequiresOpenStickWWANPair(t *testing.T) {
tests := []struct {
name string
candidate modem.Candidate
want bool
}{
{
name: "native",
candidate: modem.Candidate{
ID: "wwan0",
QMIControl: "/dev/wwan0qmi0",
},
want: true,
},
{
name: "mhi native discovery id",
candidate: modem.Candidate{
ID: "mhi-wwan0",
QMIControl: "/dev/wwan0qmi0",
},
want: true,
},
{
name: "different control device",
candidate: modem.Candidate{
ID: "wwan0",
QMIControl: "/dev/cdc-wdm0",
},
want: false,
},
{
name: "non native id",
candidate: modem.Candidate{
ID: "usb0",
QMIControl: "/dev/usb0qmi0",
},
want: false,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
if got := isNativeQMICandidate(tt.candidate); got != tt.want {
t.Fatalf("isNativeQMICandidate() = %v, want %v", got, tt.want)
}
})
}
}
-30
View File
@@ -74,17 +74,6 @@ func TestCountryForMCCUsesEmbeddedCountryIndex(t *testing.T) {
} }
} }
func TestMCCsByCountryReturnsCompleteIndependentGrouping(t *testing.T) {
grouped := MCCsByCountry()
if got := grouped["GB"]; len(got) != 2 || got[0] != "234" || got[1] != "235" {
t.Fatalf("GB MCCs = %#v", got)
}
grouped["GB"][0] = "999"
if country, ok := CountryForMCC("234"); !ok || country != "GB" {
t.Fatalf("mutating returned grouping changed embedded index: (%q, %v)", country, ok)
}
}
func TestCarrierForIMSIHandlesTwoAndThreeDigitMNCs(t *testing.T) { func TestCarrierForIMSIHandlesTwoAndThreeDigitMNCs(t *testing.T) {
tests := []struct { tests := []struct {
imsi string imsi string
@@ -121,22 +110,3 @@ func TestCarrierForSIMUsesAndroidGIDRuleBeforePLMNFallback(t *testing.T) {
t.Fatalf("CarrierForSIM generic fallback = (%q, %q, %q, %v)", plmn, name, country, ok) t.Fatalf("CarrierForSIM generic fallback = (%q, %q, %q, %v)", plmn, name, country, ok)
} }
} }
func TestCarrierForSIMRecognizesGiffgaffWithoutRelabelingGenericO2(t *testing.T) {
for _, identity := range []CarrierIdentity{
{IMSI: "234100000000001", GID1: "508FFFFF", MNCLength: 2},
{IMSI: "234100000000001", SPN: "GiffGaff", MNCLength: 2},
} {
plmn, name, country, ok := CarrierForSIM(identity)
if !ok || plmn != "23410" || name != "giffgaff" || country != "GB" {
t.Fatalf("giffgaff identity = (%q, %q, %q, %v)", plmn, name, country, ok)
}
}
_, name, _, ok := CarrierForSIM(CarrierIdentity{
IMSI: "234100000000001", MNCLength: 2,
})
if !ok || name == "giffgaff" {
t.Fatalf("generic O2 SIM was mislabeled as giffgaff: (%q, %v)", name, ok)
}
}
+9 -61
View File
@@ -39,19 +39,6 @@ func (manager *Manager) readSnapshot(
if snapshot.Model == "" && !strings.EqualFold(candidate.Product, "Android") { if snapshot.Model == "" && !strings.EqualFold(candidate.Product, "Android") {
snapshot.Model = candidate.Product snapshot.Model = candidate.Product
} }
// Native MHI/QMI devices expose their immutable modem identity through DMS.
// Read it before any SIM-dependent AT probes: a missing/bad card can make
// those commands slow or fail, but must never prevent IMEI from appearing.
if strings.EqualFold(strings.TrimSpace(backend), "qmi") && isNativeQMICandidate(candidate) {
qmiContext, cancelQMI := manager.withTimeout(ctx, manager.commandTimeout*5)
qmiIMEI, qmiErr := manager.readNativeQMIIMEI(qmiContext, candidate)
cancelQMI()
if qmiErr == nil {
snapshot.IMEI = qmiIMEI
} else {
snapshot.Warnings = append(snapshot.Warnings, "read IMEI via QMI DMS: "+qmiErr.Error())
}
}
optional := func(command string) (modem.Response, bool) { optional := func(command string) (modem.Response, bool) {
response, commandErr := manager.command(ctx, client, command) response, commandErr := manager.command(ctx, client, command)
@@ -69,28 +56,10 @@ func (manager *Manager) readSnapshot(
if ccidErr != nil { if ccidErr != nil {
ccid, ccidErr = manager.command(ctx, client, "AT+QCCID") ccid, ccidErr = manager.command(ctx, client, "AT+QCCID")
} }
if ccidErr != nil && strings.EqualFold(strings.TrimSpace(backend), "qmi") && isNativeQMICandidate(candidate) &&
strings.EqualFold(strings.TrimSpace(snapshot.SIMStatus), "READY") {
// Without a READY SIM the QMI UIM ICCID read blocks until its (long)
// timeout, and every refresh holds the device lock while it does so,
// starving the AT terminal. Only fall back to QMI when the AT CPIN
// probe already proved a card is present.
qmiContext, cancelQMI := manager.withTimeout(ctx, manager.commandTimeout*5)
qmiICCID, qmiErr := manager.readNativeQMIICCID(qmiContext, candidate)
cancelQMI()
if qmiErr == nil {
snapshot.ICCID = qmiICCID
ccidErr = nil
} else {
snapshot.Warnings = append(snapshot.Warnings, "read ICCID via QMI UIM: "+qmiErr.Error())
}
}
if ccidErr != nil { if ccidErr != nil {
snapshot.Warnings = append(snapshot.Warnings, "read ICCID: "+ccidErr.Error()) snapshot.Warnings = append(snapshot.Warnings, "read ICCID: "+ccidErr.Error())
} else { } else {
if snapshot.ICCID == "" { snapshot.ICCID = parseICCIDIdentifier(ccid, []string{"+CCID:", "+QCCID:"}, 18, 22)
snapshot.ICCID = parseICCIDIdentifier(ccid, []string{"+CCID:", "+QCCID:"}, 18, 22)
}
} }
previousICCID = strings.TrimSpace(previousICCID) previousICCID = strings.TrimSpace(previousICCID)
if previousICCID != "" && snapshot.ICCID != "" && !strings.EqualFold(previousICCID, snapshot.ICCID) { if previousICCID != "" && snapshot.ICCID != "" && !strings.EqualFold(previousICCID, snapshot.ICCID) {
@@ -190,36 +159,15 @@ func (manager *Manager) readSnapshot(
snapshot.RegistrationStatus = 1 snapshot.RegistrationStatus = 1
snapshot.RegistrationSource = "COPS" snapshot.RegistrationSource = "COPS"
} }
if snapshot.IMEI == "" { if response, ok := optional("AT+CGSN"); ok {
// AT+CGSN on some MHI modems (the UFI dongle behind the OpenStick 410) snapshot.IMEI = parseIdentifier(
// returns the IMEI line but never a final OK, so it would block until the response,
// caller's deadline (30s during a periodic refresh) and starve every other []string{"+CGSN:", "+GSN:"},
// device operation behind the lock. Give it an independent short timeout 14,
// and let the WWAN transport's drain discard the trailing stale bytes. 17,
cgsnCtx, cancelCGSN := context.WithTimeout(ctx, manager.commandTimeout) )
cgsnResponse, cgsnErr := manager.command(cgsnCtx, client, "AT+CGSN")
cancelCGSN()
if cgsnErr == nil {
if imei := parseIdentifier(cgsnResponse, []string{"+CGSN:", "+GSN:"}, 14, 17); imei != "" {
snapshot.IMEI = imei
}
}
}
if snapshot.IMEI == "" && strings.EqualFold(strings.TrimSpace(backend), "qmi") && isNativeQMICandidate(candidate) {
qmiContext, cancelQMI := manager.withTimeout(ctx, manager.commandTimeout*5)
qmiIMEI, qmiErr := manager.readNativeQMIIMEI(qmiContext, candidate)
cancelQMI()
if qmiErr == nil {
snapshot.IMEI = qmiIMEI
} else {
snapshot.Warnings = append(snapshot.Warnings, "read IMEI via QMI DMS: "+qmiErr.Error())
}
}
if snapshot.IMEI == "" && previousSnapshot != nil {
// IMEI is hardware identity and does not change with the inserted card.
// Preserve a prior successful read across a transient QMI/AT failure.
snapshot.IMEI = previousSnapshot.IMEI
} }
if response, ok := optional("AT+CFUN?"); ok { if response, ok := optional("AT+CFUN?"); ok {
if mode, found := parseCFUN(response); found { if mode, found := parseCFUN(response); found {
snapshot.OperatingMode = mode snapshot.OperatingMode = mode
-142
View File
@@ -1,142 +0,0 @@
package device
import (
"context"
"errors"
"strings"
"sync"
"testing"
"time"
"vocat/internal/modem"
)
// lenientATClient answers every command with a bare CommandError and records
// the commands it saw. It lets snapshot tests exercise the full readSnapshot
// sequence without enumerating every step of the transcript.
type lenientATClient struct {
mu sync.Mutex
commands []string
cgsnDelay time.Duration
cgsnIMEI string
}
func (c *lenientATClient) Execute(ctx context.Context, command string) (modem.Response, error) {
c.mu.Lock()
c.commands = append(c.commands, command)
c.mu.Unlock()
if command == "ATI" {
return okResponse("Qualcomm", "PCIe/MHI WWAN modem", "Revision: native-410"), nil
}
if command == "AT+CGSN" && c.cgsnDelay > 0 {
select {
case <-time.After(c.cgsnDelay):
case <-ctx.Done():
}
}
if command == "AT+CGSN" && c.cgsnIMEI != "" {
return okResponse("+CGSN: " + c.cgsnIMEI), nil
}
return modem.Response{}, &modem.CommandError{Command: command, Final: "ERROR"}
}
func (c *lenientATClient) WaitURC(context.Context, func(string) bool) (string, error) {
return "", errors.New("no URC")
}
func (c *lenientATClient) Close() error { return nil }
func (c *lenientATClient) saw(command string) bool {
c.mu.Lock()
defer c.mu.Unlock()
for _, seen := range c.commands {
if seen == command {
return true
}
}
return false
}
// AT+CGSN on some MHI modems returns the IMEI line but never a final OK, so it
// would block until the caller's deadline and hold the device lock for the
// whole periodic refresh. The snapshot must bound CGSN with its own short
// timeout instead of inheriting the refresh deadline.
func TestManagerRefreshBoundsCGSNTimeout(t *testing.T) {
client := &lenientATClient{cgsnDelay: 5 * time.Second}
manager, id := newStartedTestManager(t, client)
ctx, cancel := context.WithTimeout(context.Background(), 4*time.Second)
defer cancel()
start := time.Now()
snapshot, err := manager.Refresh(ctx, id)
elapsed := time.Since(start)
if err != nil {
t.Fatalf("Refresh: %v", err)
}
// CGSN times out after CommandTimeout (1s in the test manager); the rest
// of the snapshot is immediate. An un-bounded CGSN would wait for the
// 4s outer deadline (or worse, a real 30s refresh deadline).
if elapsed > 3*time.Second {
t.Fatalf("Refresh took %s; CGSN was not bounded by CommandTimeout", elapsed)
}
if !client.saw("AT+CGSN") {
t.Fatalf("CGSN was never sent; commands = %v", client.commands)
}
if snapshot.IMEI != "" {
t.Fatalf("IMEI = %q, want empty after CGSN timeout", snapshot.IMEI)
}
}
// A missing SIM must not fall back to the QMI UIM ICCID read: without a READY
// card that call blocks until its long timeout and starves the AT terminal
// behind the device lock.
func TestManagerRefreshSkipsQMIICCIDWithoutReadySIM(t *testing.T) {
// CGSN succeeds so the snapshot does not fall back to the QMI DMS IMEI
// read either; the test focuses on the UIM ICCID fallback being skipped
// without a READY card.
client := &lenientATClient{cgsnIMEI: "866241014372802"}
manager, err := NewManager(Options{
Discoverer: staticDiscoverer{candidates: []modem.Candidate{{
ID: "mhi-wwan0",
Product: "PCIe/MHI WWAN modem",
QMIControl: "/dev/wwan0qmi0",
NetworkInterface: "wwan0",
ATPort: modem.Port{Path: "/dev/wwan0at0", Name: "wwan0at0", Role: modem.PortRoleAT},
}}},
Opener: &staticOpener{client: client},
})
if err != nil {
t.Fatal(err)
}
if err := manager.Start(context.Background()); err != nil {
t.Fatal(err)
}
t.Cleanup(func() { _ = manager.Stop(context.Background()) })
qmiCalls := 0
manager.qmiRadioOpener = func(context.Context, string) (qmiRadioSession, error) {
qmiCalls++
return nil, errors.New("QMI should not be opened without a SIM")
}
if err := manager.SetBackend("mhi-wwan0", "qmi"); err != nil {
t.Fatal(err)
}
snapshot, err := manager.Refresh(context.Background(), "mhi-wwan0")
if err != nil {
t.Fatalf("Refresh: %v", err)
}
// Exactly one QMI open is expected: the immutable DMS IMEI read runs
// unconditionally for native QMI candidates (IMEI is hardware identity,
// independent of the card). The UIM ICCID fallback, which would block
// without a READY SIM, must be skipped.
if qmiCalls != 1 {
t.Fatalf("qmiRadioOpener called %d times, want 1 (DMS IMEI only, UIM ICCID must be skipped without a READY SIM)", qmiCalls)
}
for _, warning := range snapshot.Warnings {
if strings.Contains(warning, "QMI UIM") {
t.Fatalf("unexpected QMI ICCID warning: %q", warning)
}
}
}
-194
View File
@@ -1,194 +0,0 @@
package device
import (
"context"
"errors"
"fmt"
"strings"
"time"
)
func (manager *Manager) withNativeQMIVoWiFiSession(ctx context.Context, id string, fn func(nativeQMIVoWiFiSession) error) error {
control, native, err := manager.nativeQMIControl(id)
if err != nil {
return err
}
if !native {
return errors.New("native QMI control is unavailable")
}
session, err := manager.qmiRadioOpener(ctx, control)
if err != nil {
return fmt.Errorf("open native QMI control: %w", err)
}
defer session.Close()
qmiSession, ok := session.(nativeQMIVoWiFiSession)
if !ok {
return errors.New("native QMI session lacks UIM/NAS support")
}
return fn(qmiSession)
}
// ReadNativeQMIIdentity supplies the live subscription identity without using
// an AT port. The primitive return values intentionally keep device independent
// from the VoWiFi package while satisfying its narrow controller interface.
func (manager *Manager) ReadNativeQMIIdentity(ctx context.Context, id string) (iccid, imsi, imei, mcc, mnc string, err error) {
err = manager.withNativeQMIVoWiFiSession(ctx, id, func(session nativeQMIVoWiFiSession) error {
if iccid, err = session.GetICCID(ctx); err != nil {
return fmt.Errorf("read QMI ICCID: %w", err)
}
if imsi, err = session.GetIMSI(ctx); err != nil {
return fmt.Errorf("read QMI IMSI: %w", err)
}
if imei, err = session.GetIMEI(ctx); err != nil {
return fmt.Errorf("read QMI IMEI: %w", err)
}
if mcc, mnc, err = session.GetNativeMCCMNC(ctx); err != nil {
return fmt.Errorf("read QMI home PLMN: %w", err)
}
return nil
})
return
}
func (manager *Manager) ProbeNativeQMIApplication(ctx context.Context, id, preference string) (aid []byte, application string, err error) {
err = manager.withNativeQMIVoWiFiSession(ctx, id, func(session nativeQMIVoWiFiSession) error {
if strings.EqualFold(strings.TrimSpace(preference), "isim_strict") {
aid, err = session.GetISIMAID(ctx)
application = "ISIM"
return err
}
if aid, err = session.GetUSIMAID(ctx); err == nil {
application = "USIM"
return nil
}
aid, err = session.GetISIMAID(ctx)
application = "ISIM"
return err
})
return
}
func (manager *Manager) AuthenticateNativeQMI(ctx context.Context, id string, aid, apdu []byte) (response []byte, err error) {
err = manager.withNativeQMIVoWiFiSession(ctx, id, func(session nativeQMIVoWiFiSession) error {
channel, openErr := session.OpenLogicalChannel(ctx, 1, aid)
if openErr != nil {
return fmt.Errorf("open QMI UIM logical channel: %w", openErr)
}
command := append([]byte(nil), apdu...)
response, err = session.SendAPDU(ctx, 1, channel, command)
// ISO/IEC 7816-4 procedure bytes are transport-level continuation,
// not an AKA rejection. QMI exposes the raw status words, so follow
// 61xx/9Fxx with GET RESPONSE and retry 6Cxx with the advised Le while
// the same logical channel is still open.
for step := 0; err == nil && step < 4 && len(response) >= 2; step++ {
sw1, sw2 := response[len(response)-2], response[len(response)-1]
switch sw1 {
case 0x61, 0x9f:
response, err = session.SendAPDU(ctx, 1, channel, []byte{0x00, 0xc0, 0x00, 0x00, sw2})
case 0x6c:
if len(command) < 5 {
step = 4
continue
}
command[len(command)-1] = sw2
response, err = session.SendAPDU(ctx, 1, channel, command)
default:
step = 4
}
}
closeErr := session.CloseLogicalChannel(ctx, 1, channel)
return errors.Join(err, closeErr)
})
return
}
func (manager *Manager) NativeQMIRadioSnapshot(ctx context.Context, id string) (mode int, psAttached bool, err error) {
err = manager.withNativeQMIVoWiFiSession(ctx, id, func(session nativeQMIVoWiFiSession) error {
qmiMode, modeErr := session.GetOperatingMode(ctx)
if modeErr != nil {
return modeErr
}
mode = qmiModeAsCFUN(qmiMode)
serving, servingErr := session.GetServingSystem(ctx)
if servingErr == nil && serving != nil {
psAttached = serving.PSAttached
}
// An RF-off modem commonly rejects NAS serving-system queries; DMS mode
// remains sufficient evidence and data cannot be attached while RF is off.
if servingErr != nil && !isQMIRadioOffMode(qmiMode) {
return servingErr
}
return nil
})
return
}
func (manager *Manager) StopNativeQMICellularData(ctx context.Context, id string) error {
return manager.withNativeQMIVoWiFiSession(ctx, id, func(session nativeQMIVoWiFiSession) error {
serving, err := session.GetServingSystem(ctx)
if err != nil {
return nil
}
if serving == nil || !serving.PSAttached {
return nil
}
if err := session.AttachDetach(ctx, false); err != nil {
return err
}
deadline := time.NewTicker(250 * time.Millisecond)
defer deadline.Stop()
for attempt := 0; attempt < 12; attempt++ {
current, readErr := session.GetServingSystem(ctx)
if readErr == nil && (current == nil || !current.PSAttached) {
return nil
}
select {
case <-ctx.Done():
return ctx.Err()
case <-deadline.C:
}
}
return errors.New("native QMI packet service remained attached")
})
}
func (manager *Manager) SetNativeQMIRadioOff(ctx context.Context, id string, off bool) error {
_, err := manager.SetFlight(ctx, id, off)
return err
}
func (manager *Manager) powerCycleNativeQMISIM(ctx context.Context, id string) (bool, error) {
control, native, err := manager.nativeQMIControl(id)
if err != nil || !native {
return native, err
}
session, err := manager.qmiRadioOpener(ctx, control)
if err != nil {
return true, err
}
defer session.Close()
uim, ok := session.(nativeQMIVoWiFiSession)
if !ok {
return true, errors.New("native QMI session lacks SIM power control")
}
if resetter, ok := session.(nativeQMIUIMResetSession); ok {
_ = resetter.ResetUIM(ctx)
}
if err := uim.PowerOffSIM(ctx, 1); err != nil {
return true, err
}
select {
case <-ctx.Done():
return true, ctx.Err()
case <-time.After(3 * time.Second):
}
if err := uim.PowerOnSIM(ctx, 1); err != nil {
return true, err
}
select {
case <-ctx.Done():
return true, ctx.Err()
case <-time.After(time.Second):
}
return true, nil
}
-10
View File
@@ -1,10 +0,0 @@
package i18n
// Keep feature-specific diagnostic strings together so additions to the proxy
// probe do not cause conflicts in the shared dictionary.
func init() {
zhToEn["UDP ASSOCIATE 已建立,但实际 UDP 数据没有返回;检查节点 UDP 转发、路由和防火墙。"] = "UDP ASSOCIATE was established, but no UDP payload returned; check the node's UDP forwarding, routing, and firewall."
zhToEn["TCP 握手、认证、UDP ASSOCIATE 与真实 UDP DNS 往返均通过。"] = "TCP handshake, authentication, UDP ASSOCIATE, and a real UDP DNS round trip all passed."
zhToEn["代理已保存,SOCKS5 认证与真实 UDP 往返均通过。"] = "Proxy saved; SOCKS5 authentication and a real UDP round trip both passed."
zhToEn["SOCKS5 认证与真实 UDP 往返探测通过。"] = "SOCKS5 authentication and a real UDP round-trip probe passed."
}
+10 -78
View File
@@ -11,10 +11,8 @@ import (
"strings" "strings"
) )
const ( const quectelVendorID = "2c7c"
djiVendorID = "2ca3"
dji4GProductID = "4006"
)
type SysFSDiscoverer struct { type SysFSDiscoverer struct {
SysRoot string SysRoot string
DevRoot string DevRoot string
@@ -42,19 +40,10 @@ func (d *SysFSDiscoverer) Discover(ctx context.Context) ([]Candidate, error) {
if os.IsNotExist(err) { if os.IsNotExist(err) {
entries = nil entries = nil
} else { } else {
return nil, fmt.Errorf("discover USB QMI modems: %w", err) return nil, fmt.Errorf("discover Quectel USB devices: %w", err)
} }
} }
// Candidate modems are identified by kernel driver binding instead of a
// vendor-ID whitelist. qmi_wwan only binds Qualcomm QMI control interfaces,
// so any USB device with a bound interface exposes a live QMI channel. This
// keeps discovery vendor-neutral (SIMCom, Sierra, Telit and other
// Qualcomm-based modems are found automatically) while MBIM-only devices
// stay out, because cdc_mbim binds their control interface instead and the
// project has no MBIM backend.
qmiBound := d.qmiWWANBoundDevices()
aliases := readSerialAliases(filepath.Join(d.DevRoot, "serial", "by-id")) aliases := readSerialAliases(filepath.Join(d.DevRoot, "serial", "by-id"))
devices := make(map[string]*discoveredUSBDevice) devices := make(map[string]*discoveredUSBDevice)
for _, entry := range entries { for _, entry := range entries {
@@ -81,17 +70,17 @@ func (d *SysFSDiscoverer) Discover(ctx context.Context) ([]Candidate, error) {
resolvedDevice = devicePath resolvedDevice = devicePath
} }
vendorID := strings.ToLower(readTrimmed(filepath.Join(resolvedDevice, "idVendor"))) vendorID := strings.ToLower(readTrimmed(filepath.Join(resolvedDevice, "idVendor")))
productID := strings.ToLower(readTrimmed(filepath.Join(resolvedDevice, "idProduct"))) if vendorID != quectelVendorID {
if _, bound := qmiBound[deviceName]; !bound && !IsDJI4GUSB(vendorID, productID) {
continue continue
} }
state := devices[deviceName] state := devices[deviceName]
if state == nil { if state == nil {
productID := strings.ToLower(readTrimmed(filepath.Join(resolvedDevice, "idProduct")))
serialNumber := readTrimmed(filepath.Join(resolvedDevice, "serial")) serialNumber := readTrimmed(filepath.Join(resolvedDevice, "serial"))
state = &discoveredUSBDevice{ state = &discoveredUSBDevice{
candidate: Candidate{ candidate: Candidate{
ID: candidateID(vendorID, productID, serialNumber, deviceName), ID: candidateID(productID, serialNumber, deviceName),
VendorID: vendorID, VendorID: vendorID,
ProductID: productID, ProductID: productID,
Manufacturer: readTrimmed(filepath.Join(resolvedDevice, "manufacturer")), Manufacturer: readTrimmed(filepath.Join(resolvedDevice, "manufacturer")),
@@ -141,14 +130,6 @@ func (d *SysFSDiscoverer) Discover(ctx context.Context) ([]Candidate, error) {
}) })
assignQuectelPortRoles(state.candidate.Ports) assignQuectelPortRoles(state.candidate.Ports)
state.candidate.ATPort = selectATPort(state.candidate.Ports) state.candidate.ATPort = selectATPort(state.candidate.Ports)
if !state.candidate.HasATPort() {
// A bound QMI interface proves the modem is alive, but the snapshot,
// SMS, USSD and eSIM (AT+CSIM) paths all require an AT port. A missing
// ttyUSB/ttyACM node almost always means the option/qcserial driver
// does not claim the serial interfaces (often a missing PID in its
// device-ID table), not that the module lacks an AT interface.
state.candidate.DiscoveryIssue = "at_port_missing"
}
result = append(result, state.candidate) result = append(result, state.candidate)
} }
wwanCandidates, err := d.discoverWWAN(ctx) wwanCandidates, err := d.discoverWWAN(ctx)
@@ -160,14 +141,6 @@ func (d *SysFSDiscoverer) Discover(ctx context.Context) ([]Candidate, error) {
return result, nil return result, nil
} }
// IsDJI4GUSB reports whether a USB identity belongs to the first-generation
// DJI/Baiwang 4G module. It keeps the factory 2ca3:4006 identity usable without
// requiring a persistent AT+QCFG USB identity rewrite to Quectel 2c7c:0125.
func IsDJI4GUSB(vendorID, productID string) bool {
return strings.EqualFold(strings.TrimSpace(vendorID), djiVendorID) &&
strings.EqualFold(strings.TrimSpace(productID), dji4GProductID)
}
type discoveredWWANDevice struct { type discoveredWWANDevice struct {
index string index string
ports []Port ports []Port
@@ -262,7 +235,7 @@ func (d *SysFSDiscoverer) discoverWWAN(ctx context.Context) ([]Candidate, error)
Ports: group.ports, NetworkInterface: selectWWANNetworkInterface(d.SysRoot, group.index), Ports: group.ports, NetworkInterface: selectWWANNetworkInterface(d.SysRoot, group.index),
} }
if len(group.ports) > 0 { if len(group.ports) > 0 {
candidate.ATPort = selectWWANATPort(group.ports) candidate.ATPort = group.ports[0]
} }
if len(group.qmiNames) > 0 { if len(group.qmiNames) > 0 {
candidate.QMIControl = filepath.Join(d.DevRoot, group.qmiNames[0]) candidate.QMIControl = filepath.Join(d.DevRoot, group.qmiNames[0])
@@ -273,20 +246,6 @@ func (d *SysFSDiscoverer) discoverWWAN(ctx context.Context) ([]Candidate, error)
return result, nil return result, nil
} }
// selectWWANATPort prefers the secondary AT port (…at1) over the primary
// (…at0) when both exist, falling back to the first AT port otherwise. Some
// Qualcomm MHI modems (notably the UFI dongle behind the OpenStick 410) answer
// on at1 immediately while at0 delays every response by 10-20 seconds, so the
// secondary port is the usable AT channel.
func selectWWANATPort(ports []Port) Port {
for _, port := range ports {
if port.InterfaceNumber == 1 {
return port
}
}
return ports[0]
}
func parseWWANPortName(name string) (index, kind string, portIndex int, ok bool) { func parseWWANPortName(name string) (index, kind string, portIndex int, ok bool) {
if !strings.HasPrefix(name, "wwan") { if !strings.HasPrefix(name, "wwan") {
return "", "", 0, false return "", "", 0, false
@@ -426,34 +385,7 @@ func readSerialAliases(root string) map[string]string {
return result return result
} }
// qmiWWANBoundDevices returns the set of USB device paths (for example "1-6" func candidateID(productID, serialNumber, usbName string) string {
// or the hub-attached "1-4.3.2") that currently have at least one interface
// bound to the kernel's qmi_wwan driver. Interface entries in the driver
// directory are named "<device-path>:<interface>.<altsetting>", so the part
// before the first colon is the owning USB device. The qmi_wwan driver only
// binds Qualcomm QMI control interfaces, so membership doubles as a vendor-
// neutral "this is a live QMI modem" signal.
func (d *SysFSDiscoverer) qmiWWANBoundDevices() map[string]struct{} {
driverRoot := filepath.Join(d.SysRoot, "bus", "usb", "drivers", "qmi_wwan")
entries, err := os.ReadDir(driverRoot)
if err != nil {
return nil
}
devices := make(map[string]struct{})
for _, entry := range entries {
// The driver directory also holds control files (bind, unbind, uevent,
// module, new_id, ...); only names containing a colon are interfaces.
deviceName, _, ok := strings.Cut(entry.Name(), ":")
if !ok || deviceName == "" {
continue
}
devices[deviceName] = struct{}{}
}
return devices
}
func candidateID(vendorID, productID, serialNumber, usbName string) string {
prefix := "usb-" + sanitizeID(vendorID)
serialNumber = strings.TrimSpace(serialNumber) serialNumber = strings.TrimSpace(serialNumber)
if serialNumber != "" && !strings.EqualFold(serialNumber, "android") { if serialNumber != "" && !strings.EqualFold(serialNumber, "android") {
// A surprising number of EC20/EC25 carrier boards expose the same // A surprising number of EC20/EC25 carrier boards expose the same
@@ -462,9 +394,9 @@ func candidateID(vendorID, productID, serialNumber, usbName string) string {
// to the same hub into one entry. Include the physical USB topology in the // to the same hub into one entry. Include the physical USB topology in the
// discovery key; configured devices remain stable through ATMapper's // discovery key; configured devices remain stable through ATMapper's
// USB-path/IMEI matching even when Linux renumbers ttyUSB nodes. // USB-path/IMEI matching even when Linux renumbers ttyUSB nodes.
return prefix + "-" + sanitizeID(serialNumber+"-"+usbName) return "quectel-" + sanitizeID(serialNumber+"-"+usbName)
} }
return prefix + "-" + sanitizeID(productID+"-"+usbName) return "quectel-" + sanitizeID(productID+"-"+usbName)
} }
func sanitizeID(value string) string { func sanitizeID(value string) string {
-23
View File
@@ -2,29 +2,6 @@ package modem
import "testing" import "testing"
func TestIsDJI4GUSBIdentity(t *testing.T) {
tests := []struct {
name string
vendorID string
productID string
want bool
}{
{name: "DJI 4G module", vendorID: "2ca3", productID: "4006", want: true},
{name: "DJI 4G module uppercase", vendorID: "2CA3", productID: "4006", want: true},
{name: "unrelated DJI device", vendorID: "2ca3", productID: "001f", want: false},
{name: "Quectel identity", vendorID: "2c7c", productID: "0125", want: false},
{name: "unrelated USB device", vendorID: "0403", productID: "6001", want: false},
}
for _, test := range tests {
t.Run(test.name, func(t *testing.T) {
if got := IsDJI4GUSB(test.vendorID, test.productID); got != test.want {
t.Fatalf("IsDJI4GUSB(%q, %q) = %v, want %v", test.vendorID, test.productID, got, test.want)
}
})
}
}
func TestSelectATPortPrefersTTYUSB2AcrossUSBCompositions(t *testing.T) { func TestSelectATPortPrefersTTYUSB2AcrossUSBCompositions(t *testing.T) {
ports := []Port{ ports := []Port{
{Name: "ttyUSB2", InterfaceNumber: 0x02, Role: PortRoleDiagnostic}, {Name: "ttyUSB2", InterfaceNumber: 0x02, Role: PortRoleDiagnostic},
+3 -153
View File
@@ -8,7 +8,6 @@ import (
"os" "os"
"path/filepath" "path/filepath"
"strconv" "strconv"
"strings"
"testing" "testing"
) )
@@ -48,7 +47,6 @@ func TestSysFSDiscoverySelectsInterface04AndNeverInterface02(t *testing.T) {
} }
mustMkdir(t, filepath.Join(usbRoot, "1-6:1.0", "net", "enx001122334455")) mustMkdir(t, filepath.Join(usbRoot, "1-6:1.0", "net", "enx001122334455"))
mustMkdir(t, filepath.Join(usbRoot, "1-6:1.4", "usbmisc", "cdc-wdm0")) mustMkdir(t, filepath.Join(usbRoot, "1-6:1.4", "usbmisc", "cdc-wdm0"))
mustBindQMIWWAN(t, sysRoot, "1-6:1.4")
discoverer := NewSysFSDiscoverer(sysRoot, devRoot) discoverer := NewSysFSDiscoverer(sysRoot, devRoot)
candidates, err := discoverer.Discover(context.Background()) candidates, err := discoverer.Discover(context.Background())
@@ -59,7 +57,7 @@ func TestSysFSDiscoverySelectsInterface04AndNeverInterface02(t *testing.T) {
t.Fatalf("got %d candidates, want 1", len(candidates)) t.Fatalf("got %d candidates, want 1", len(candidates))
} }
candidate := candidates[0] candidate := candidates[0]
if candidate.ID != "usb-2c7c-0125-1-6" { if candidate.ID != "quectel-0125-1-6" {
t.Fatalf("ID = %q", candidate.ID) t.Fatalf("ID = %q", candidate.ID)
} }
if candidate.ATPort.Name != "ttyUSB2" { if candidate.ATPort.Name != "ttyUSB2" {
@@ -103,7 +101,6 @@ func TestSysFSDiscoverySelectsTTYUSB2InQMIInterface00Layout(t *testing.T) {
) )
mustMkdir(t, filepath.Join(usbRoot, "1-6:1.4", "usbmisc", "cdc-wdm0")) mustMkdir(t, filepath.Join(usbRoot, "1-6:1.4", "usbmisc", "cdc-wdm0"))
mustMkdir(t, filepath.Join(usbRoot, "1-6:1.4", "net", "wwp0s20f0u6i4")) mustMkdir(t, filepath.Join(usbRoot, "1-6:1.4", "net", "wwp0s20f0u6i4"))
mustBindQMIWWAN(t, sysRoot, "1-6:1.4")
candidates, err := NewSysFSDiscoverer(sysRoot, devRoot).Discover(context.Background()) candidates, err := NewSysFSDiscoverer(sysRoot, devRoot).Discover(context.Background())
if err != nil { if err != nil {
@@ -149,7 +146,6 @@ func TestSysFSDiscoverySelectsATPortForSecondQMIUSBModem(t *testing.T) {
} }
mustWrite(t, filepath.Join(usbRoot, modem.usbName+":1.4", "bInterfaceNumber"), "04\n") mustWrite(t, filepath.Join(usbRoot, modem.usbName+":1.4", "bInterfaceNumber"), "04\n")
mustMkdir(t, filepath.Join(usbRoot, modem.usbName+":1.4", "usbmisc", modem.wdm)) mustMkdir(t, filepath.Join(usbRoot, modem.usbName+":1.4", "usbmisc", modem.wdm))
mustBindQMIWWAN(t, sysRoot, modem.usbName+":1.4")
} }
candidates, err := NewSysFSDiscoverer(sysRoot, devRoot).Discover(context.Background()) candidates, err := NewSysFSDiscoverer(sysRoot, devRoot).Discover(context.Background())
@@ -198,7 +194,6 @@ func TestSysFSDiscoveryDoesNotCollapseModemsWithSharedFactorySerial(t *testing.T
mustMkdir(t, filepath.Join(usbRoot, interfaceName, tty, "tty", tty)) mustMkdir(t, filepath.Join(usbRoot, interfaceName, tty, "tty", tty))
} }
mustMkdir(t, filepath.Join(usbRoot, item.usbName+":1.4", "usbmisc", fmt.Sprintf("cdc-wdm%d", index))) mustMkdir(t, filepath.Join(usbRoot, item.usbName+":1.4", "usbmisc", fmt.Sprintf("cdc-wdm%d", index)))
mustBindQMIWWAN(t, sysRoot, item.usbName+":1.4")
} }
candidates, err := NewSysFSDiscoverer(sysRoot, devRoot).Discover(context.Background()) candidates, err := NewSysFSDiscoverer(sysRoot, devRoot).Discover(context.Background())
@@ -221,11 +216,9 @@ func TestSysFSDiscoveryDoesNotCollapseModemsWithSharedFactorySerial(t *testing.T
} }
} }
func TestSysFSDiscoveryIgnoresUSBWithoutQMIWWANBinding(t *testing.T) { func TestSysFSDiscoveryIgnoresNonQuectelUSB(t *testing.T) {
root := t.TempDir() root := t.TempDir()
usbRoot := filepath.Join(root, "sys", "bus", "usb", "devices") usbRoot := filepath.Join(root, "sys", "bus", "usb", "devices")
// A plain USB serial adapter (FTDI) exposes ttyUSB but no QMI interface and
// is never bound to qmi_wwan, so it must not be treated as a modem.
mustWrite(t, filepath.Join(usbRoot, "2-1", "idVendor"), "0403\n") mustWrite(t, filepath.Join(usbRoot, "2-1", "idVendor"), "0403\n")
mustWrite(t, filepath.Join(usbRoot, "2-1:1.0", "bInterfaceNumber"), "00\n") mustWrite(t, filepath.Join(usbRoot, "2-1:1.0", "bInterfaceNumber"), "00\n")
mustMkdir(t, filepath.Join(usbRoot, "2-1:1.0", "ttyUSB9")) mustMkdir(t, filepath.Join(usbRoot, "2-1:1.0", "ttyUSB9"))
@@ -242,117 +235,6 @@ func TestSysFSDiscoveryIgnoresUSBWithoutQMIWWANBinding(t *testing.T) {
} }
} }
func TestSysFSDiscoveryFindsNonQuectelVendorBoundToQMIWWAN(t *testing.T) {
root := t.TempDir()
sysRoot := filepath.Join(root, "sys")
devRoot := filepath.Join(root, "dev")
usbRoot := filepath.Join(sysRoot, "bus", "usb", "devices")
// A Sierra EM7430 flashed to its QMI (rmnet0) composition: non-Quectel
// vendor, but its control interface is bound to qmi_wwan.
mustWrite(t, filepath.Join(usbRoot, "1-3", "idVendor"), "1199\n")
mustWrite(t, filepath.Join(usbRoot, "1-3", "idProduct"), "9077\n")
mustWrite(t, filepath.Join(usbRoot, "1-3", "manufacturer"), "Sierra Wireless, Incorporated\n")
mustWrite(t, filepath.Join(usbRoot, "1-3", "product"), "EM7430\n")
for number, tty := range []string{"ttyUSB0", "ttyUSB1", "ttyUSB2", "ttyUSB3"} {
interfaceName := "1-3:1." + strconv.Itoa(number)
mustWrite(t, filepath.Join(usbRoot, interfaceName, "bInterfaceNumber"), fmt.Sprintf("%02x\n", number))
mustMkdir(t, filepath.Join(usbRoot, interfaceName, tty, "tty", tty))
}
mustMkdir(t, filepath.Join(usbRoot, "1-3:1.4", "usbmisc", "cdc-wdm0"))
mustBindQMIWWAN(t, sysRoot, "1-3:1.4")
candidates, err := NewSysFSDiscoverer(sysRoot, devRoot).Discover(context.Background())
if err != nil {
t.Fatalf("Discover: %v", err)
}
if len(candidates) != 1 {
t.Fatalf("got %d candidates, want 1", len(candidates))
}
candidate := candidates[0]
if candidate.VendorID != "1199" || candidate.Product != "EM7430" {
t.Fatalf("candidate = %#v", candidate)
}
if candidate.ID != "usb-1199-9077-1-3" {
t.Fatalf("ID = %q", candidate.ID)
}
if candidate.ATPort.Role != PortRoleAT {
t.Fatalf("AT port = %#v", candidate.ATPort)
}
if candidate.QMIControl != filepath.Join(devRoot, "cdc-wdm0") {
t.Fatalf("QMI control = %q", candidate.QMIControl)
}
if candidate.DiscoveryIssue != "" {
t.Fatalf("discovery issue = %q, want none", candidate.DiscoveryIssue)
}
}
func TestSysFSDiscoveryMarksQMIModemWithoutATPort(t *testing.T) {
root := t.TempDir()
sysRoot := filepath.Join(root, "sys")
devRoot := filepath.Join(root, "dev")
usbRoot := filepath.Join(sysRoot, "bus", "usb", "devices")
// QMI control interface is bound, but no ttyUSB/ttyACM node exists (for
// example the option/qcserial driver does not claim the serial interfaces).
mustWrite(t, filepath.Join(usbRoot, "1-7", "idVendor"), "2c7c\n")
mustWrite(t, filepath.Join(usbRoot, "1-7", "idProduct"), "0125\n")
mustMkdir(t, filepath.Join(usbRoot, "1-7:1.4", "usbmisc", "cdc-wdm0"))
mustBindQMIWWAN(t, sysRoot, "1-7:1.4")
candidates, err := NewSysFSDiscoverer(sysRoot, devRoot).Discover(context.Background())
if err != nil {
t.Fatalf("Discover: %v", err)
}
if len(candidates) != 1 {
t.Fatalf("got %d candidates, want 1", len(candidates))
}
candidate := candidates[0]
if candidate.DiscoveryIssue != "at_port_missing" {
t.Fatalf("discovery issue = %q, want at_port_missing", candidate.DiscoveryIssue)
}
if candidate.HasATPort() {
t.Fatalf("candidate unexpectedly has an AT port: %#v", candidate.ATPort)
}
if candidate.QMIControl != filepath.Join(devRoot, "cdc-wdm0") {
t.Fatalf("QMI control = %q", candidate.QMIControl)
}
}
func TestSysFSDiscoveryFindsHubAttachedQMIWWANDevice(t *testing.T) {
root := t.TempDir()
sysRoot := filepath.Join(root, "sys")
devRoot := filepath.Join(root, "dev")
usbRoot := filepath.Join(sysRoot, "bus", "usb", "devices")
// Device behind a hub: the USB path "1-4.3.2" contains extra segments, and
// the qmi_wwan binding uses the same composite path before the colon.
mustWrite(t, filepath.Join(usbRoot, "1-4.3.2", "idVendor"), "2c7c\n")
mustWrite(t, filepath.Join(usbRoot, "1-4.3.2", "idProduct"), "0125\n")
for number, tty := range []string{"ttyUSB0", "ttyUSB1", "ttyUSB2", "ttyUSB3"} {
interfaceName := "1-4.3.2:1." + strconv.Itoa(number)
mustWrite(t, filepath.Join(usbRoot, interfaceName, "bInterfaceNumber"), fmt.Sprintf("%02x\n", number))
mustMkdir(t, filepath.Join(usbRoot, interfaceName, tty, "tty", tty))
}
mustMkdir(t, filepath.Join(usbRoot, "1-4.3.2:1.4", "usbmisc", "cdc-wdm0"))
mustBindQMIWWAN(t, sysRoot, "1-4.3.2:1.4")
candidates, err := NewSysFSDiscoverer(sysRoot, devRoot).Discover(context.Background())
if err != nil {
t.Fatalf("Discover: %v", err)
}
if len(candidates) != 1 {
t.Fatalf("got %d candidates, want 1", len(candidates))
}
candidate := candidates[0]
if candidate.ATPort.Name != "ttyUSB2" {
t.Fatalf("AT port = %#v, want ttyUSB2", candidate.ATPort)
}
if candidate.QMIControl != filepath.Join(devRoot, "cdc-wdm0") {
t.Fatalf("QMI control = %q", candidate.QMIControl)
}
if !strings.Contains(candidate.ID, "1-4-3-2") {
t.Fatalf("ID = %q, want hub topology in discovery key", candidate.ID)
}
}
func TestSysFSDiscoveryFindsPCIeMHIWWANWithoutUSBBus(t *testing.T) { func TestSysFSDiscoveryFindsPCIeMHIWWANWithoutUSBBus(t *testing.T) {
root := t.TempDir() root := t.TempDir()
sysRoot := filepath.Join(root, "sys") sysRoot := filepath.Join(root, "sys")
@@ -374,7 +256,7 @@ func TestSysFSDiscoveryFindsPCIeMHIWWANWithoutUSBBus(t *testing.T) {
if candidate.ID != "mhi-wwan0" || candidate.HardwareKind != "wwan" { if candidate.ID != "mhi-wwan0" || candidate.HardwareKind != "wwan" {
t.Fatalf("identity = %#v", candidate) t.Fatalf("identity = %#v", candidate)
} }
if candidate.ATPort.Path != filepath.Join(devRoot, "wwan0at1") || candidate.ATPort.Role != PortRoleAT { if candidate.ATPort.Path != filepath.Join(devRoot, "wwan0at0") || candidate.ATPort.Role != PortRoleAT {
t.Fatalf("AT port = %#v", candidate.ATPort) t.Fatalf("AT port = %#v", candidate.ATPort)
} }
if candidate.QMIControl != filepath.Join(devRoot, "wwan0qmi0") { if candidate.QMIControl != filepath.Join(devRoot, "wwan0qmi0") {
@@ -408,23 +290,6 @@ func TestSysFSDiscoveryFindsWWANFromDevNodesWithoutClassDirectory(t *testing.T)
} }
} }
func TestSelectWWANATPortPrefersSecondaryATPort(t *testing.T) {
ports := []Port{
{Name: "wwan0at0", InterfaceNumber: 0, Role: PortRoleAT},
{Name: "wwan0at1", InterfaceNumber: 1, Role: PortRoleAT},
}
if got := selectWWANATPort(ports); got.Name != "wwan0at1" {
t.Fatalf("selectWWANATPort = %#v, want wwan0at1", got)
}
}
func TestSelectWWANATPortFallsBackToPrimaryWhenOnlyAT0(t *testing.T) {
ports := []Port{{Name: "wwan0at0", InterfaceNumber: 0, Role: PortRoleAT}}
if got := selectWWANATPort(ports); got.Name != "wwan0at0" {
t.Fatalf("selectWWANATPort = %#v, want wwan0at0", got)
}
}
func TestParseWWANPortName(t *testing.T) { func TestParseWWANPortName(t *testing.T) {
for _, test := range []struct { for _, test := range []struct {
name, index, kind string name, index, kind string
@@ -458,18 +323,3 @@ func mustMkdir(t *testing.T, path string) {
t.Fatal(err) t.Fatal(err)
} }
} }
// mustBindQMIWWAN mimics the kernel's driver-binding directory entry: it adds
// interfaceName (e.g. "1-6:1.4") under /sys/bus/usb/drivers/qmi_wwan exactly
// like the real qmi_wwan driver directory does for a bound QMI interface.
func mustBindQMIWWAN(t *testing.T, sysRoot, interfaceName string) {
t.Helper()
driverDir := filepath.Join(sysRoot, "bus", "usb", "drivers", "qmi_wwan")
if err := os.MkdirAll(driverDir, 0o700); err != nil {
t.Fatal(err)
}
target := filepath.Join(sysRoot, "bus", "usb", "devices", interfaceName)
if err := os.Symlink(target, filepath.Join(driverDir, interfaceName)); err != nil {
t.Fatal(err)
}
}
-22
View File
@@ -4,7 +4,6 @@ import (
"context" "context"
"errors" "errors"
"fmt" "fmt"
"path/filepath"
"go.bug.st/serial" "go.bug.st/serial"
) )
@@ -22,22 +21,6 @@ func (opener SerialOpener) Open(ctx context.Context, port Port) (Client, error)
if path == "" { if path == "" {
return nil, errors.New("modem: candidate has no AT port") return nil, errors.New("modem: candidate has no AT port")
} }
if isNativeWWANATPath(path) {
rawPort, err := openNativeWWANATTransport(path)
if err != nil {
return nil, fmt.Errorf("open WWAN AT port %s: %w", path, err)
}
if err := rawPort.ResetInputBuffer(); err != nil {
_ = rawPort.Close()
return nil, fmt.Errorf("reset WWAN AT input buffer %s: %w", path, err)
}
session, err := NewSession(rawPort, opener.SessionOptions)
if err != nil {
_ = rawPort.Close()
return nil, err
}
return session, nil
}
baudRate := opener.BaudRate baudRate := opener.BaudRate
if baudRate <= 0 { if baudRate <= 0 {
baudRate = 115200 baudRate = 115200
@@ -62,8 +45,3 @@ func (opener SerialOpener) Open(ctx context.Context, port Port) (Client, error)
} }
return session, nil return session, nil
} }
func isNativeWWANATPath(path string) bool {
_, kind, _, ok := parseWWANPortName(filepath.Base(filepath.Clean(path)))
return ok && kind == "at"
}
-24
View File
@@ -1,24 +0,0 @@
package modem
import "testing"
func TestIsNativeWWANATPath(t *testing.T) {
for _, path := range []string{
"/dev/wwan0at0",
"/dev/wwan12at3",
} {
if !isNativeWWANATPath(path) {
t.Errorf("isNativeWWANATPath(%q) = false", path)
}
}
for _, path := range []string{
"/dev/wwan0qmi0",
"/dev/ttyUSB2",
"/tmp/wwan-at",
"/dev/wwanat0",
} {
if isNativeWWANATPath(path) {
t.Errorf("isNativeWWANATPath(%q) = true", path)
}
}
}
+6 -27
View File
@@ -8,7 +8,6 @@ import (
"io" "io"
"strings" "strings"
"sync" "sync"
"syscall"
"time" "time"
) )
@@ -148,19 +147,14 @@ func (session *Session) executeLocked(ctx context.Context, command string) (Resp
if err := ctx.Err(); err != nil { if err := ctx.Err(); err != nil {
return response, err return response, err
} }
// Drain the transport before writing the command. Serial transports wait
// for any pending output here (a no-op after a synchronous command), while
// WWAN transports discard bytes left over from a previous command that
// timed out; without this, a late reply (e.g. a slow CGSN response) would
// be mis-parsed as this command's output.
if err := drainTransport(ctx, session.transport); err != nil {
session.poisonLocked()
return response, fmt.Errorf("drain %s: %w", command, err)
}
if err := writeAll(session.transport, []byte(command+"\r")); err != nil { if err := writeAll(session.transport, []byte(command+"\r")); err != nil {
session.poisonLocked() session.poisonLocked()
return response, fmt.Errorf("write %s: %w", command, err) return response, fmt.Errorf("write %s: %w", command, err)
} }
if err := session.transport.Drain(); err != nil {
session.poisonLocked()
return response, fmt.Errorf("drain %s: %w", command, err)
}
return session.readFinalLocked(ctx, started, command, "", response) return session.readFinalLocked(ctx, started, command, "", response)
} }
@@ -184,7 +178,7 @@ func (session *Session) executePromptLocked(
session.poisonLocked() session.poisonLocked()
return response, fmt.Errorf("write %s: %w", command, err) return response, fmt.Errorf("write %s: %w", command, err)
} }
if err := drainTransport(ctx, session.transport); err != nil { if err := session.transport.Drain(); err != nil {
session.poisonLocked() session.poisonLocked()
return response, fmt.Errorf("drain %s: %w", command, err) return response, fmt.Errorf("drain %s: %w", command, err)
} }
@@ -209,7 +203,7 @@ func (session *Session) executePromptLocked(
response.Duration = time.Since(started) response.Duration = time.Since(started)
return response, fmt.Errorf("terminate %s payload: %w", command, err) return response, fmt.Errorf("terminate %s payload: %w", command, err)
} }
if err := drainTransport(ctx, session.transport); err != nil { if err := session.transport.Drain(); err != nil {
session.poisonLocked() session.poisonLocked()
response.Duration = time.Since(started) response.Duration = time.Since(started)
return response, fmt.Errorf("drain %s payload: %w", command, err) return response, fmt.Errorf("drain %s payload: %w", command, err)
@@ -217,21 +211,6 @@ func (session *Session) executePromptLocked(
return session.readFinalLocked(ctx, started, command, string(payload), response) return session.readFinalLocked(ctx, started, command, string(payload), response)
} }
// drainTransport retries tcdrain/TCSBRK when the kernel interrupts it with a
// signal. go.bug.st/serial already retries EINTR for Read, but its Linux
// Drain implementation currently returns the transient error directly.
func drainTransport(ctx context.Context, transport Transport) error {
for {
err := transport.Drain()
if !errors.Is(err, syscall.EINTR) {
return err
}
if err := ctx.Err(); err != nil {
return err
}
}
}
func (session *Session) readFinalLocked( func (session *Session) readFinalLocked(
ctx context.Context, ctx context.Context,
started time.Time, started time.Time,
+1 -95
View File
@@ -6,7 +6,6 @@ import (
"fmt" "fmt"
"io" "io"
"sync" "sync"
"syscall"
"testing" "testing"
"time" "time"
) )
@@ -28,8 +27,6 @@ type transcriptTransport struct {
unexpected error unexpected error
writePartial bool writePartial bool
writeEvents chan string writeEvents chan string
drainErrors []error
drainCount int
} }
func (transport *transcriptTransport) Write(payload []byte) (int, error) { func (transport *transcriptTransport) Write(payload []byte) (int, error) {
@@ -117,17 +114,7 @@ func (transport *transcriptTransport) Read(buffer []byte) (int, error) {
return 0, nil return 0, nil
} }
func (transport *transcriptTransport) Drain() error { func (transport *transcriptTransport) Drain() error { return nil }
transport.mu.Lock()
defer transport.mu.Unlock()
transport.drainCount++
if len(transport.drainErrors) == 0 {
return nil
}
err := transport.drainErrors[0]
transport.drainErrors = transport.drainErrors[1:]
return err
}
func (transport *transcriptTransport) ResetInputBuffer() error { func (transport *transcriptTransport) ResetInputBuffer() error {
transport.mu.Lock() transport.mu.Lock()
@@ -151,31 +138,6 @@ func (transport *transcriptTransport) Close() error {
return nil return nil
} }
func TestSessionRetriesInterruptedDrain(t *testing.T) {
transport := &transcriptTransport{
steps: []transportStep{{
write: "AT+CSQ\r",
chunks: []string{"\r\nAT+CSQ\r\n+CSQ: 24,99\r\nOK\r\n"},
}},
drainErrors: []error{syscall.EINTR},
}
session, err := NewSession(transport, SessionOptions{})
if err != nil {
t.Fatalf("NewSession() error = %v", err)
}
response, err := session.Execute(context.Background(), "AT+CSQ")
if err != nil {
t.Fatalf("Execute() error = %v", err)
}
if response.Final != "OK" {
t.Fatalf("response final = %q", response.Final)
}
if transport.drainCount != 2 {
t.Fatalf("Drain() calls = %d, want 2", transport.drainCount)
}
}
func TestSessionSeparatesInterleavedURCs(t *testing.T) { func TestSessionSeparatesInterleavedURCs(t *testing.T) {
transport := &transcriptTransport{steps: []transportStep{{ transport := &transcriptTransport{steps: []transportStep{{
write: "AT+CSQ\r", write: "AT+CSQ\r",
@@ -453,62 +415,6 @@ func TestSessionExecutePromptRejectsUnsafeInput(t *testing.T) {
} }
} }
// drainOrderTransport forwards to an inner Transport while recording
// transport-level events, so a test can assert the exact order of Drain and
// Write calls.
type drainOrderTransport struct {
inner Transport
events chan string
}
func (transport *drainOrderTransport) Write(payload []byte) (int, error) {
transport.events <- "write:" + string(payload)
return transport.inner.Write(payload)
}
func (transport *drainOrderTransport) Read(buffer []byte) (int, error) {
return transport.inner.Read(buffer)
}
func (transport *drainOrderTransport) Drain() error {
transport.events <- "drain"
return transport.inner.Drain()
}
func (transport *drainOrderTransport) ResetInputBuffer() error {
return transport.inner.ResetInputBuffer()
}
func (transport *drainOrderTransport) SetReadTimeout(timeout time.Duration) error {
return transport.inner.SetReadTimeout(timeout)
}
func (transport *drainOrderTransport) Close() error {
return transport.inner.Close()
}
// WWAN transports discard stale bytes left over from a timed-out command
// inside Drain, so the session must call it before writing the next command;
// otherwise a late reply (e.g. a slow CGSN response) would be mis-parsed as
// the new command's output.
func TestSessionDrainsBeforeWritingCommand(t *testing.T) {
inner := &transcriptTransport{steps: []transportStep{{
write: "AT+CSQ\r",
chunks: []string{"\r\n+CSQ: 24,99\r\nOK\r\n"},
}}}
events := make(chan string, 8)
session := newTestSession(t, &drainOrderTransport{inner: inner, events: events})
if _, err := session.Execute(context.Background(), "AT+CSQ"); err != nil {
t.Fatalf("Execute: %v", err)
}
if first := <-events; first != "drain" {
t.Fatalf("first transport event = %q, want drain before the command write", first)
}
if second := <-events; second != "write:AT+CSQ\r" {
t.Fatalf("second transport event = %q, want the command write", second)
}
}
func newTestSession(t *testing.T, transport Transport) *Session { func newTestSession(t *testing.T, transport Transport) *Session {
t.Helper() t.Helper()
session, err := NewSession(transport, SessionOptions{ session, err := NewSession(transport, SessionOptions{
-180
View File
@@ -1,180 +0,0 @@
//go:build linux
package modem
import (
"errors"
"fmt"
"io"
"sync"
"time"
"golang.org/x/sys/unix"
)
// nativeWWANATTransport adapts a Linux WWAN AT character device to Session's
// serial-like transport contract. WWAN ports are not TTYs, so termios ioctls
// used by ordinary serial libraries fail even though raw AT read/write works.
type nativeWWANATTransport struct {
mu sync.RWMutex
fd int
readTimeout time.Duration
closed bool
}
func openNativeWWANATTransport(path string) (Transport, error) {
fd, err := unix.Open(path, unix.O_RDWR|unix.O_NONBLOCK|unix.O_NOCTTY|unix.O_CLOEXEC, 0)
if err != nil {
return nil, err
}
return &nativeWWANATTransport{fd: fd, readTimeout: -1}, nil
}
func (transport *nativeWWANATTransport) Read(buffer []byte) (int, error) {
transport.mu.RLock()
defer transport.mu.RUnlock()
if transport.closed {
return 0, io.ErrClosedPipe
}
deadline := time.Time{}
if transport.readTimeout >= 0 {
deadline = time.Now().Add(transport.readTimeout)
}
for {
timeout := -1
if !deadline.IsZero() {
remaining := time.Until(deadline)
if remaining <= 0 {
return 0, nil
}
timeout = int((remaining + time.Millisecond - 1) / time.Millisecond)
}
fds := []unix.PollFd{{Fd: int32(transport.fd), Events: unix.POLLIN}}
ready, err := unix.Poll(fds, timeout)
if errors.Is(err, unix.EINTR) {
continue
}
if err != nil {
return 0, err
}
if ready == 0 {
return 0, nil
}
if fds[0].Revents&(unix.POLLERR|unix.POLLHUP|unix.POLLNVAL) != 0 &&
fds[0].Revents&unix.POLLIN == 0 {
return 0, io.EOF
}
count, err := unix.Read(transport.fd, buffer)
if errors.Is(err, unix.EINTR) || errors.Is(err, unix.EAGAIN) {
continue
}
if count < 0 {
count = 0
}
return count, err
}
}
func (transport *nativeWWANATTransport) Write(buffer []byte) (int, error) {
transport.mu.RLock()
defer transport.mu.RUnlock()
if transport.closed {
return 0, io.ErrClosedPipe
}
for {
count, err := unix.Write(transport.fd, buffer)
if errors.Is(err, unix.EINTR) {
continue
}
if errors.Is(err, unix.EAGAIN) {
fds := []unix.PollFd{{Fd: int32(transport.fd), Events: unix.POLLOUT}}
if _, pollErr := unix.Poll(fds, 1000); pollErr != nil {
return 0, pollErr
}
continue
}
if count < 0 {
count = 0
}
return count, err
}
}
func (transport *nativeWWANATTransport) Drain() error {
transport.mu.RLock()
defer transport.mu.RUnlock()
if transport.closed {
return io.ErrClosedPipe
}
// WWAN character-device writes are handed to the modem synchronously and
// have no termios output queue to drain. A previous command that timed out
// can leave late bytes in the input buffer (e.g. a slow CGSN reply that
// arrives after the command deadline); discard them here so the next
// command starts from a clean stream instead of mis-parsing stale output.
buffer := make([]byte, 4096)
for {
fds := []unix.PollFd{{Fd: int32(transport.fd), Events: unix.POLLIN}}
ready, err := unix.Poll(fds, 0)
if err != nil {
return err
}
if ready == 0 || fds[0].Revents&unix.POLLIN == 0 {
return nil
}
if _, err := unix.Read(transport.fd, buffer); err != nil {
if errors.Is(err, unix.EINTR) || errors.Is(err, unix.EAGAIN) {
continue
}
return err
}
}
}
func (transport *nativeWWANATTransport) ResetInputBuffer() error {
transport.mu.RLock()
defer transport.mu.RUnlock()
if transport.closed {
return io.ErrClosedPipe
}
buffer := make([]byte, 4096)
for {
fds := []unix.PollFd{{Fd: int32(transport.fd), Events: unix.POLLIN}}
ready, err := unix.Poll(fds, 0)
if err != nil {
return err
}
if ready == 0 || fds[0].Revents&unix.POLLIN == 0 {
return nil
}
if _, err := unix.Read(transport.fd, buffer); err != nil {
if errors.Is(err, unix.EINTR) || errors.Is(err, unix.EAGAIN) {
continue
}
return err
}
}
}
func (transport *nativeWWANATTransport) SetReadTimeout(timeout time.Duration) error {
if timeout < -1 {
return fmt.Errorf("invalid read timeout %s", timeout)
}
transport.mu.Lock()
defer transport.mu.Unlock()
if transport.closed {
return io.ErrClosedPipe
}
transport.readTimeout = timeout
return nil
}
func (transport *nativeWWANATTransport) Close() error {
transport.mu.Lock()
defer transport.mu.Unlock()
if transport.closed {
return nil
}
transport.closed = true
return unix.Close(transport.fd)
}
-78
View File
@@ -1,78 +0,0 @@
//go:build linux
package modem
import (
"errors"
"io"
"testing"
"golang.org/x/sys/unix"
)
// TestNativeWWANATTransportDrainDiscardsPendingBytes verifies Drain discards
// every byte already buffered on the transport. A command that timed out (e.g.
// AT+CGSN on an MHI modem that never answers OK) can leave its late reply in
// the input buffer; the next command's Drain must clear it, however much data
// is pending, before the session writes the new command.
func TestNativeWWANATTransportDrainDiscardsPendingBytes(t *testing.T) {
readFD, writeFD := socketpair(t)
defer unix.Close(writeFD)
// More than one 4096-byte Drain read: a slow CGSN reply (echo + IMEI +
// trailing CRLF) can exceed a single buffer.
payload := make([]byte, 12000)
for index := range payload {
payload[index] = byte('A' + index%26)
}
payload = append(payload, []byte("\r\n+CGSN: 357091089453326\r\n")...)
if _, err := unix.Write(writeFD, payload); err != nil {
t.Fatalf("seed stale bytes: %v", err)
}
transport := &nativeWWANATTransport{fd: readFD, readTimeout: -1}
if err := transport.Drain(); err != nil {
t.Fatalf("Drain: %v", err)
}
assertNoPendingBytes(t, readFD, "after Drain")
// Draining a clean transport is a fast no-op that must not block or error.
if err := transport.Drain(); err != nil {
t.Fatalf("second Drain: %v", err)
}
}
// TestNativeWWANATTransportDrainRejectsClosedTransport covers the guard that
// keeps a poisoned session from draining a wedged, already-closed fd.
func TestNativeWWANATTransportDrainRejectsClosedTransport(t *testing.T) {
readFD, writeFD := socketpair(t)
defer unix.Close(writeFD)
transport := &nativeWWANATTransport{fd: readFD, readTimeout: -1}
if err := transport.Close(); err != nil {
t.Fatalf("Close: %v", err)
}
if err := transport.Drain(); !errors.Is(err, io.ErrClosedPipe) {
t.Fatalf("Drain after Close = %v, want ErrClosedPipe", err)
}
}
func socketpair(t *testing.T) (int, int) {
t.Helper()
fds, err := unix.Socketpair(unix.AF_UNIX, unix.SOCK_STREAM, 0)
if err != nil {
t.Fatal(err)
}
return fds[0], fds[1]
}
func assertNoPendingBytes(t *testing.T, fd int, context string) {
t.Helper()
fds := []unix.PollFd{{Fd: int32(fd), Events: unix.POLLIN}}
ready, err := unix.Poll(fds, 0)
if err != nil {
t.Fatalf("poll %s: %v", context, err)
}
if ready != 0 {
t.Fatalf("%s: fd still readable", context)
}
}
-9
View File
@@ -1,9 +0,0 @@
//go:build !linux
package modem
import "fmt"
func openNativeWWANATTransport(path string) (Transport, error) {
return nil, fmt.Errorf("native WWAN AT ports are unsupported on this platform: %s", path)
}
+1 -246
View File
@@ -3,8 +3,6 @@ package proxy
import ( import (
"bufio" "bufio"
"context" "context"
"crypto/rand"
"encoding/binary"
"errors" "errors"
"fmt" "fmt"
"io" "io"
@@ -19,44 +17,18 @@ type ProbeResult struct {
Reachable bool `json:"reachable"` Reachable bool `json:"reachable"`
HandshakeOK bool `json:"handshake_ok"` HandshakeOK bool `json:"handshake_ok"`
UDPAssociateOK bool `json:"udp_associate_ok"` UDPAssociateOK bool `json:"udp_associate_ok"`
UDPExchangeOK bool `json:"udp_exchange_ok"`
AuthMethod string `json:"auth_method,omitempty"` AuthMethod string `json:"auth_method,omitempty"`
RelayAddr string `json:"relay_addr,omitempty"` RelayAddr string `json:"relay_addr,omitempty"`
DNSServer string `json:"dns_server,omitempty"`
DNSName string `json:"dns_name,omitempty"`
DNSRCode int `json:"dns_rcode,omitempty"`
RoundTripMS int64 `json:"round_trip_ms,omitempty"`
Diagnosis string `json:"diagnosis,omitempty"` Diagnosis string `json:"diagnosis,omitempty"`
Hint string `json:"hint,omitempty"` Hint string `json:"hint,omitempty"`
} }
const (
defaultProbeDNSServer = "1.1.1.1:53"
defaultProbeDNSName = "example.com"
)
func ProbeSOCKS5( func ProbeSOCKS5(
ctx context.Context, ctx context.Context,
address string, address string,
username string, username string,
password string, password string,
timeout time.Duration, timeout time.Duration,
) (ProbeResult, error) {
return probeSOCKS5(ctx, address, username, password, timeout, defaultProbeDNSServer, defaultProbeDNSName)
}
// probeSOCKS5 performs both the SOCKS5 control-plane negotiation and a real
// UDP DNS round trip through the returned relay. Keeping the target injectable
// makes the negative paths deterministic in tests without weakening the
// production probe.
func probeSOCKS5(
ctx context.Context,
address string,
username string,
password string,
timeout time.Duration,
dnsServer string,
dnsName string,
) (ProbeResult, error) { ) (ProbeResult, error) {
address = strings.TrimSpace(address) address = strings.TrimSpace(address)
if _, _, err := net.SplitHostPort(address); err != nil { if _, _, err := net.SplitHostPort(address); err != nil {
@@ -150,228 +122,11 @@ func probeSOCKS5(
port := int(portBytes[0])<<8 | int(portBytes[1]) port := int(portBytes[0])<<8 | int(portBytes[1])
result.UDPAssociateOK = true result.UDPAssociateOK = true
result.RelayAddr = net.JoinHostPort(host, fmt.Sprintf("%d", port)) result.RelayAddr = net.JoinHostPort(host, fmt.Sprintf("%d", port))
result.DNSServer = dnsServer
result.DNSName = dnsName
if err := probeUDPExchange(probeContext, connection, &result, host, port, dnsServer, dnsName, timeout); err != nil {
if result.Diagnosis == "" {
result.Diagnosis = "udp_no_roundtrip"
}
if result.Hint == "" {
result.Hint = i18n.T("UDP ASSOCIATE 已建立,但实际 UDP 数据没有返回;检查节点 UDP 转发、路由和防火墙。")
}
return result, err
}
result.Diagnosis = "ready" result.Diagnosis = "ready"
result.Hint = i18n.T("TCP 握手、认证UDP ASSOCIATE 与真实 UDP DNS 往返均通过。") result.Hint = i18n.T("TCP 握手、认证UDP ASSOCIATE 均通过。")
return result, nil return result, nil
} }
func probeUDPExchange(
ctx context.Context,
control net.Conn,
result *ProbeResult,
relayHost string,
relayPort int,
dnsServer string,
dnsName string,
timeout time.Duration,
) error {
if result == nil {
return errors.New("proxy: probe result is nil")
}
dnsAddress, err := net.ResolveUDPAddr("udp", strings.TrimSpace(dnsServer))
if err != nil {
result.Diagnosis = "invalid_dns_target"
return fmt.Errorf("proxy: resolve UDP probe target: %w", err)
}
relayHost = strings.TrimSpace(relayHost)
if relayIP := net.ParseIP(relayHost); relayIP != nil && relayIP.IsUnspecified() {
remoteHost, _, splitErr := net.SplitHostPort(control.RemoteAddr().String())
if splitErr != nil {
result.Diagnosis = "invalid_udp_relay"
return fmt.Errorf("proxy: resolve wildcard UDP relay: %w", splitErr)
}
relayHost = remoteHost
}
relayAddress, err := net.ResolveUDPAddr("udp", net.JoinHostPort(relayHost, fmt.Sprintf("%d", relayPort)))
if err != nil {
result.Diagnosis = "invalid_udp_relay"
return fmt.Errorf("proxy: resolve UDP relay: %w", err)
}
localNetwork := "udp4"
if relayAddress.IP != nil && relayAddress.IP.To4() == nil {
localNetwork = "udp6"
}
udpConnection, err := net.ListenUDP(localNetwork, nil)
if err != nil {
result.Diagnosis = "udp_socket_failed"
return fmt.Errorf("proxy: open UDP probe socket: %w", err)
}
defer udpConnection.Close()
deadline := time.Now().Add(timeout)
if contextDeadline, ok := ctx.Deadline(); ok && contextDeadline.Before(deadline) {
deadline = contextDeadline
}
if err := udpConnection.SetDeadline(deadline); err != nil {
return fmt.Errorf("proxy: set UDP probe deadline: %w", err)
}
query, queryID, err := buildDNSQuery(dnsName)
if err != nil {
result.Diagnosis = "invalid_dns_name"
return err
}
datagram, err := buildSOCKSUDPDatagram(dnsAddress, query)
if err != nil {
result.Diagnosis = "invalid_dns_target"
return err
}
startedAt := time.Now()
if _, err := udpConnection.WriteToUDP(datagram, relayAddress); err != nil {
result.Diagnosis = "udp_send_failed"
return fmt.Errorf("proxy: send UDP DNS probe: %w", err)
}
responseBuffer := make([]byte, 64*1024)
for {
if err := ctx.Err(); err != nil {
result.Diagnosis = "udp_no_roundtrip"
return fmt.Errorf("proxy: UDP DNS probe cancelled: %w", err)
}
count, sender, err := udpConnection.ReadFromUDP(responseBuffer)
if err != nil {
result.Diagnosis = "udp_no_roundtrip"
return fmt.Errorf("proxy: UDP DNS probe did not return: %w", err)
}
if !sameUDPAddress(sender, relayAddress) {
continue
}
payload, err := parseSOCKSUDPDatagram(responseBuffer[:count])
if err != nil {
result.Diagnosis = "udp_invalid_response"
return fmt.Errorf("proxy: parse UDP relay response: %w", err)
}
rcode, err := validateDNSResponse(payload, queryID)
if err != nil {
result.Diagnosis = "dns_invalid_response"
return err
}
result.UDPExchangeOK = true
result.DNSRCode = rcode
result.RoundTripMS = time.Since(startedAt).Milliseconds()
if result.RoundTripMS < 1 {
result.RoundTripMS = 1
}
return nil
}
}
func buildDNSQuery(name string) ([]byte, uint16, error) {
name = strings.TrimSuffix(strings.TrimSpace(name), ".")
if name == "" || len(name) > 253 {
return nil, 0, errors.New("proxy: UDP probe DNS name is invalid")
}
var idBytes [2]byte
if _, err := rand.Read(idBytes[:]); err != nil {
return nil, 0, fmt.Errorf("proxy: generate DNS probe ID: %w", err)
}
queryID := binary.BigEndian.Uint16(idBytes[:])
query := make([]byte, 12, 12+len(name)+6)
binary.BigEndian.PutUint16(query[0:2], queryID)
binary.BigEndian.PutUint16(query[2:4], 0x0100)
binary.BigEndian.PutUint16(query[4:6], 1)
for _, label := range strings.Split(name, ".") {
if label == "" || len(label) > 63 {
return nil, 0, errors.New("proxy: UDP probe DNS label is invalid")
}
query = append(query, byte(len(label)))
query = append(query, label...)
}
query = append(query, 0, 0, 1, 0, 1)
return query, queryID, nil
}
func buildSOCKSUDPDatagram(target *net.UDPAddr, payload []byte) ([]byte, error) {
if target == nil || target.IP == nil || target.Port < 1 || target.Port > 65535 {
return nil, errors.New("proxy: UDP target is invalid")
}
packet := []byte{0, 0, 0}
if ipv4 := target.IP.To4(); ipv4 != nil {
packet = append(packet, 1)
packet = append(packet, ipv4...)
} else if ipv6 := target.IP.To16(); ipv6 != nil {
packet = append(packet, 4)
packet = append(packet, ipv6...)
} else {
return nil, errors.New("proxy: UDP target address family is invalid")
}
packet = append(packet, byte(target.Port>>8), byte(target.Port))
packet = append(packet, payload...)
return packet, nil
}
func parseSOCKSUDPDatagram(packet []byte) ([]byte, error) {
if len(packet) < 4 || packet[0] != 0 || packet[1] != 0 {
return nil, errors.New("invalid SOCKS5 UDP header")
}
if packet[2] != 0 {
return nil, errors.New("fragmented SOCKS5 UDP response is unsupported")
}
offset := 4
switch packet[3] {
case 1:
offset += net.IPv4len
case 3:
if len(packet) <= offset {
return nil, errors.New("truncated SOCKS5 UDP domain")
}
offset += 1 + int(packet[offset])
case 4:
offset += net.IPv6len
default:
return nil, errors.New("unsupported SOCKS5 UDP address type")
}
if offset+2 > len(packet) {
return nil, errors.New("truncated SOCKS5 UDP endpoint")
}
offset += 2
if offset >= len(packet) {
return nil, errors.New("empty SOCKS5 UDP payload")
}
return packet[offset:], nil
}
func validateDNSResponse(payload []byte, queryID uint16) (int, error) {
if len(payload) < 12 {
return 0, errors.New("proxy: DNS response is truncated")
}
if binary.BigEndian.Uint16(payload[0:2]) != queryID {
return 0, errors.New("proxy: DNS response ID does not match")
}
flags := binary.BigEndian.Uint16(payload[2:4])
if flags&0x8000 == 0 {
return 0, errors.New("proxy: DNS response is not a response")
}
rcode := int(flags & 0x000f)
if rcode != 0 {
return rcode, fmt.Errorf("proxy: DNS probe returned response code %d", rcode)
}
return rcode, nil
}
func sameUDPAddress(left, right *net.UDPAddr) bool {
if left == nil || right == nil || left.Port != right.Port {
return false
}
if left.IP == nil || right.IP == nil {
return true
}
return left.IP.Equal(right.IP)
}
func readSOCKSAddress(reader io.Reader, addressType byte) (string, error) { func readSOCKSAddress(reader io.Reader, addressType byte) (string, error) {
switch addressType { switch addressType {
case 1: case 1:
-120
View File
@@ -1,120 +0,0 @@
package proxy
import (
"context"
"io"
"net"
"testing"
"time"
)
func TestProbeSOCKS5RequiresRealUDPExchange(t *testing.T) {
address, stop := startProbeSOCKS5Server(t, false)
defer stop()
result, err := probeSOCKS5(
context.Background(),
address,
"",
"",
250*time.Millisecond,
"192.0.2.53:53",
"example.test",
)
if err == nil {
t.Fatal("Probe unexpectedly succeeded when the relay dropped UDP data")
}
if !result.UDPAssociateOK {
t.Fatal("UDP ASSOCIATE should have succeeded")
}
if result.UDPExchangeOK {
t.Fatal("UDP exchange should not be reported as successful")
}
if result.Diagnosis != "udp_no_roundtrip" {
t.Fatalf("Diagnosis = %q, want udp_no_roundtrip", result.Diagnosis)
}
}
func TestProbeSOCKS5ReportsRealUDPDNSRoundTrip(t *testing.T) {
address, stop := startProbeSOCKS5Server(t, true)
defer stop()
result, err := probeSOCKS5(
context.Background(),
address,
"",
"",
time.Second,
"192.0.2.53:53",
"example.test",
)
if err != nil {
t.Fatalf("Probe returned error: %v", err)
}
if !result.HandshakeOK || !result.UDPAssociateOK || !result.UDPExchangeOK {
t.Fatalf("Probe evidence incomplete: %+v", result)
}
if result.Diagnosis != "ready" {
t.Fatalf("Diagnosis = %q, want ready", result.Diagnosis)
}
if result.DNSName != "example.test" || result.DNSServer != "192.0.2.53:53" {
t.Fatalf("Unexpected DNS evidence: %+v", result)
}
}
func startProbeSOCKS5Server(t *testing.T, echoDNS bool) (string, func()) {
t.Helper()
udpConnection, err := net.ListenUDP("udp4", &net.UDPAddr{IP: net.IPv4(127, 0, 0, 1)})
if err != nil {
t.Fatalf("ListenUDP: %v", err)
}
tcpListener, err := net.Listen("tcp4", "127.0.0.1:0")
if err != nil {
udpConnection.Close()
t.Fatalf("Listen: %v", err)
}
if echoDNS {
go func() {
buffer := make([]byte, 2048)
count, sender, readErr := udpConnection.ReadFromUDP(buffer)
if readErr != nil || count < 22 {
return
}
// The test target is IPv4, so the SOCKS5 UDP header is ten bytes.
buffer[12] = 0x81
buffer[13] = 0x80
_, _ = udpConnection.WriteToUDP(buffer[:count], sender)
}()
}
go func() {
connection, acceptErr := tcpListener.Accept()
if acceptErr != nil {
return
}
defer connection.Close()
greeting := make([]byte, 3)
if _, readErr := io.ReadFull(connection, greeting); readErr != nil {
return
}
if _, writeErr := connection.Write([]byte{5, 0}); writeErr != nil {
return
}
associate := make([]byte, 10)
if _, readErr := io.ReadFull(connection, associate); readErr != nil {
return
}
udpPort := udpConnection.LocalAddr().(*net.UDPAddr).Port
response := []byte{5, 0, 0, 1, 127, 0, 0, 1, byte(udpPort >> 8), byte(udpPort)}
if _, writeErr := connection.Write(response); writeErr != nil {
return
}
_, _ = io.Copy(io.Discard, connection)
}()
return tcpListener.Addr().String(), func() {
_ = tcpListener.Close()
_ = udpConnection.Close()
}
}
-145
View File
@@ -1,145 +0,0 @@
// Package qmiport coordinates access to native Linux WWAN QMI control ports.
package qmiport
import (
"context"
"errors"
"fmt"
"os"
"path/filepath"
"sync"
"syscall"
)
type portHandle interface {
Close() error
Stat() (os.FileInfo, error)
}
type portOpener func(string) (portHandle, error)
type entry struct {
gate chan struct{}
keeperMu sync.Mutex
keeper portHandle
}
type coordinator struct {
mu sync.Mutex
entries map[string]*entry
opener portOpener
}
// Lease serializes one QMI transaction sequence for a control port. Release
// does not close the keepalive descriptor: the old OpenStick 410 WWAN driver
// removes DATA5_CNTL when the final descriptor closes, and does not reliably
// recreate it until the modem is reset.
type Lease struct {
entry *entry
once sync.Once
}
var processCoordinator = newCoordinator(openPort)
func newCoordinator(opener portOpener) *coordinator {
return &coordinator{
entries: make(map[string]*entry),
opener: opener,
}
}
func openPort(path string) (portHandle, error) {
return os.OpenFile(path, os.O_RDWR|syscall.O_NONBLOCK|syscall.O_NOCTTY, 0)
}
// Acquire keeps path open for the process lifetime and grants exclusive QMI
// access until the returned lease is released. A modem reset replaces the
// device node; ensureKeeper detects that inode change and rearms the keepalive.
func Acquire(ctx context.Context, path string) (*Lease, error) {
return processCoordinator.acquire(ctx, path)
}
func (coordinator *coordinator) acquire(ctx context.Context, path string) (*Lease, error) {
if ctx == nil {
ctx = context.Background()
}
path = filepath.Clean(path)
if path == "." || path == "" {
return nil, errors.New("QMI control path is required")
}
coordinator.mu.Lock()
item := coordinator.entries[path]
if item == nil {
item = &entry{gate: make(chan struct{}, 1)}
item.gate <- struct{}{}
coordinator.entries[path] = item
}
coordinator.mu.Unlock()
select {
case <-ctx.Done():
return nil, ctx.Err()
case <-item.gate:
}
if err := coordinator.ensureKeeper(path, item); err != nil {
item.gate <- struct{}{}
return nil, fmt.Errorf("keep QMI control port %s open: %w", path, err)
}
return &Lease{entry: item}, nil
}
func (coordinator *coordinator) ensureKeeper(path string, item *entry) error {
item.keeperMu.Lock()
defer item.keeperMu.Unlock()
currentInfo, err := os.Stat(path)
if err != nil {
return err
}
if item.keeper != nil {
keeperInfo, statErr := item.keeper.Stat()
if statErr == nil && os.SameFile(currentInfo, keeperInfo) {
return nil
}
_ = item.keeper.Close()
item.keeper = nil
}
keeper, err := coordinator.opener(path)
if err != nil {
return err
}
item.keeper = keeper
return nil
}
// Release allows the next QMI-UIM operation to use this control port.
func (lease *Lease) Release() {
if lease == nil || lease.entry == nil {
return
}
lease.once.Do(func() {
lease.entry.gate <- struct{}{}
})
}
func (coordinator *coordinator) close() error {
coordinator.mu.Lock()
entries := make([]*entry, 0, len(coordinator.entries))
for _, item := range coordinator.entries {
entries = append(entries, item)
}
coordinator.entries = make(map[string]*entry)
coordinator.mu.Unlock()
var errs []error
for _, item := range entries {
item.keeperMu.Lock()
if item.keeper != nil {
errs = append(errs, item.keeper.Close())
item.keeper = nil
}
item.keeperMu.Unlock()
}
return errors.Join(errs...)
}
-77
View File
@@ -1,77 +0,0 @@
package qmiport
import (
"context"
"os"
"path/filepath"
"sync/atomic"
"testing"
"time"
)
func TestLeaseKeepsPortOpenAndSerializesUsers(t *testing.T) {
path := filepath.Join(t.TempDir(), "wwan0qmi0")
if err := os.WriteFile(path, nil, 0o600); err != nil {
t.Fatal(err)
}
var opens atomic.Int32
coordinator := newCoordinator(func(path string) (portHandle, error) {
opens.Add(1)
return os.OpenFile(path, os.O_RDWR, 0)
})
t.Cleanup(func() { _ = coordinator.close() })
first, err := coordinator.acquire(context.Background(), path)
if err != nil {
t.Fatalf("first acquire: %v", err)
}
ctx, cancel := context.WithTimeout(context.Background(), 20*time.Millisecond)
defer cancel()
if _, err := coordinator.acquire(ctx, path); err == nil {
t.Fatal("second acquire succeeded before the first lease was released")
}
first.Release()
second, err := coordinator.acquire(context.Background(), path)
if err != nil {
t.Fatalf("second acquire: %v", err)
}
second.Release()
if got := opens.Load(); got != 1 {
t.Fatalf("keepalive opens = %d, want 1", got)
}
}
func TestLeaseReopensReplacedDeviceNode(t *testing.T) {
directory := t.TempDir()
path := filepath.Join(directory, "wwan0qmi0")
if err := os.WriteFile(path, nil, 0o600); err != nil {
t.Fatal(err)
}
var opens atomic.Int32
coordinator := newCoordinator(func(path string) (portHandle, error) {
opens.Add(1)
return os.OpenFile(path, os.O_RDWR, 0)
})
t.Cleanup(func() { _ = coordinator.close() })
first, err := coordinator.acquire(context.Background(), path)
if err != nil {
t.Fatal(err)
}
first.Release()
if err := os.Remove(path); err != nil {
t.Fatal(err)
}
if err := os.WriteFile(path, nil, 0o600); err != nil {
t.Fatal(err)
}
second, err := coordinator.acquire(context.Background(), path)
if err != nil {
t.Fatal(err)
}
second.Release()
if got := opens.Load(); got != 2 {
t.Fatalf("keepalive opens = %d, want 2 after node replacement", got)
}
}
+1 -69
View File
@@ -1,15 +1,6 @@
package server package server
import ( import "testing"
"errors"
"net/http"
"net/http/httptest"
"strings"
"testing"
"vocat/internal/device"
"vocat/internal/modem"
)
func TestValidateATCommandBlocksTrafficMessagingAndDialActions(t *testing.T) { func TestValidateATCommandBlocksTrafficMessagingAndDialActions(t *testing.T) {
t.Parallel() t.Parallel()
@@ -53,62 +44,3 @@ func TestValidateATCommandAllowsReadOnlyStatusQueries(t *testing.T) {
} }
} }
} }
// The AT terminal must present ERROR / +CME ERROR as a normal response, not as
// a 502. Before the CommandError branch was restored, every unsupported or
// SIM-less command was folded into "the device operation failed", hiding the
// real reason from the user.
func TestHandleATSurfacesCommandErrorAsResponse(t *testing.T) {
controller := fakeDeviceController{
entry: device.Device{ID: "dev1"},
atHandler: func(command string) (modem.Response, error) {
return modem.Response{}, &modem.CommandError{
Command: command,
Final: "+CME ERROR: 10",
Lines: []string{"+CME ERROR: 10"},
}
},
}
server := &Server{devices: controller, logger: regionTestLogger(), maxRequestBodyBytes: 1 << 20}
recorder := httptest.NewRecorder()
request := httptest.NewRequest(
http.MethodPost,
"/api/devices/dev1/actions/at",
strings.NewReader(`{"cmd":"AT+CPIN?","timeout_ms":5000}`),
)
request.Header.Set("Content-Type", "application/json")
if !server.handleAT(recorder, request, "dev1") {
t.Fatal("handleAT returned false")
}
if recorder.Code != http.StatusOK {
t.Fatalf("status = %d, want 200 (body=%s)", recorder.Code, recorder.Body.String())
}
data := decodeData(t, recorder)
response, _ := data["response"].(string)
if !strings.Contains(response, "+CME ERROR: 10") {
t.Fatalf("response = %q, want +CME ERROR text", response)
}
}
func TestHandleATMapsNonCommandErrorTo502(t *testing.T) {
controller := fakeDeviceController{
entry: device.Device{ID: "dev1"},
atErr: errors.New("transport wedged"),
}
server := &Server{devices: controller, logger: regionTestLogger(), maxRequestBodyBytes: 1 << 20}
recorder := httptest.NewRecorder()
request := httptest.NewRequest(
http.MethodPost,
"/api/devices/dev1/actions/at",
strings.NewReader(`{"cmd":"AT+CSQ"}`),
)
request.Header.Set("Content-Type", "application/json")
if !server.handleAT(recorder, request, "dev1") {
t.Fatal("handleAT returned false")
}
if recorder.Code != http.StatusBadGateway {
t.Fatalf("status = %d, want 502", recorder.Code)
}
}
@@ -57,7 +57,7 @@ func (s *Server) notifyAutomaticTask(ctx context.Context, task store.AutomaticTa
}, "\n"), }, "\n"),
Time: run.FinishedAt, Task: task, Run: run, Time: run.FinishedAt, Task: task, Run: run,
} }
for _, channel := range []string{"telegram", "bark", "email", "pushplus", "webhook", "wecom", "lark"} { for _, channel := range []string{"telegram", "bark", "email", "pushplus", "webhook", "wecom"} {
setting, err := s.store.NotificationSetting(ctx, channel) setting, err := s.store.NotificationSetting(ctx, channel)
if errors.Is(err, store.ErrNotFound) || (err == nil && !setting.Enabled) { if errors.Is(err, store.ErrNotFound) || (err == nil && !setting.Enabled) {
continue continue
@@ -91,8 +91,6 @@ func sendAutomaticTaskNotification(ctx context.Context, channel string, config m
return sendAutomaticTaskWebhook(ctx, config, message) return sendAutomaticTaskWebhook(ctx, config, message)
case "wecom": case "wecom":
return sendWecomNotification(ctx, config, wecomAutomaticTaskValues(message)) return sendWecomNotification(ctx, config, wecomAutomaticTaskValues(message))
case "lark":
return sendLarkNotification(ctx, config, larkAutomaticTaskValues(message))
default: default:
return fmt.Errorf("unsupported notification channel %q", channel) return fmt.Errorf("unsupported notification channel %q", channel)
} }
+53 -125
View File
@@ -142,9 +142,6 @@ func (s *Server) routeDeviceAPI(w http.ResponseWriter, r *http.Request) bool {
} }
writeJSON(w, http.StatusOK, map[string]any{"data": s.dashboardDevices()}) writeJSON(w, http.StatusOK, map[string]any{"data": s.dashboardDevices()})
return true return true
case "dashboard/host":
s.handleDashboardHost(w, r)
return true
case "devices": case "devices":
return s.handleDevices(w, r) return s.handleDevices(w, r)
case "devices/discovered": case "devices/discovered":
@@ -242,14 +239,10 @@ func (s *Server) handleDevices(w http.ResponseWriter, r *http.Request) bool {
return true return true
} }
config := payload.toStoreDevice() config := payload.toStoreDevice()
isNative410 := config.DeviceType == store.DeviceTypeWiFi410
// Newly added hardware starts fail-closed: RF is disabled immediately and // Newly added hardware starts fail-closed: RF is disabled immediately and
// VoWiFi becomes the desired service on supported devices. Native 410 // VoWiFi becomes the desired service. Cellular registration is only
// uses its QMI UIM/DMS/NAS adapter; only cellular SMS remains unavailable. // restored by the user's later airplane-mode-off action.
config.VoWiFiEnabled = true config.VoWiFiEnabled = true
if isNative410 {
config.SMSEnabled = false
}
config.NetworkEnabled = false config.NetworkEnabled = false
if !s.developerActive(r.Context()) { if !s.developerActive(r.Context()) {
config.NetworkEnabled = false config.NetworkEnabled = false
@@ -291,7 +284,7 @@ func (s *Server) handleDevices(w http.ResponseWriter, r *http.Request) bool {
} }
} }
} }
if s.vowifi != nil && config.VoWiFiEnabled { if s.vowifi != nil {
if _, err := s.vowifi.RequestEnabled(config.ID, true); err != nil { if _, err := s.vowifi.RequestEnabled(config.ID, true); err != nil {
s.logger.Warn("new device saved in safe airplane mode but VoWiFi start was not queued", "device_id", config.ID, "error", err) s.logger.Warn("new device saved in safe airplane mode but VoWiFi start was not queued", "device_id", config.ID, "error", err)
} }
@@ -351,14 +344,7 @@ func (s *Server) handleDiscoveredDevices(w http.ResponseWriter, r *http.Request)
writeJSON(w, http.StatusOK, map[string]any{"data": map[string]any{"devices": []any{}}}) writeJSON(w, http.StatusOK, map[string]any{"data": map[string]any{"devices": []any{}}})
return true return true
} }
// This endpoint backs the add-device dialog. Always perform a new physical devices := s.devices.List()
// scan instead of serving Manager.List(), which intentionally retains
// unplugged configured devices so the main device list can show them offline.
devices, err := s.devices.Discover(r.Context())
if err != nil {
s.writeDeviceError(w, err)
return true
}
configured, err := s.store.ListDevices(r.Context()) configured, err := s.store.ListDevices(r.Context())
if err != nil { if err != nil {
s.writeStoreError(w, err) s.writeStoreError(w, err)
@@ -366,9 +352,6 @@ func (s *Server) handleDiscoveredDevices(w http.ResponseWriter, r *http.Request)
} }
result := make([]map[string]any, 0, len(devices)) result := make([]map[string]any, 0, len(devices))
for _, entry := range devices { for _, entry := range devices {
if !entry.Discovered {
continue
}
candidate := entry.Candidate candidate := entry.Candidate
atPorts := make([]string, 0, len(candidate.Ports)) atPorts := make([]string, 0, len(candidate.Ports))
for _, port := range candidate.Ports { for _, port := range candidate.Ports {
@@ -390,7 +373,6 @@ func (s *Server) handleDiscoveredDevices(w http.ResponseWriter, r *http.Request)
result = append(result, map[string]any{ result = append(result, map[string]any{
"hardware_kind": candidate.HardwareKind, "hardware_kind": candidate.HardwareKind,
"reader_name": candidate.ReaderName, "reader_name": candidate.ReaderName,
"device_type": discoveredDeviceType(candidate),
"discovery_key": entry.ID, "discovery_key": entry.ID,
"control_path": controlPath, "control_path": controlPath,
"net_interface": candidate.NetworkInterface, "net_interface": candidate.NetworkInterface,
@@ -520,10 +502,6 @@ func (s *Server) handleDevicePath(
} }
entry, physicalID, physicalPresent := s.physicalForConfig(config) entry, physicalID, physicalPresent := s.physicalForConfig(config)
if config.DeviceType == store.DeviceTypeWiFi410 && native410UnsupportedOperation(tail) {
writeError(w, http.StatusNotImplemented, "device_feature_unsupported", "this feature is not supported by the native OpenStick 410 backend")
return true
}
if config.DeviceType == store.DeviceTypeUSBSIMReader && len(tail) > 0 { if config.DeviceType == store.DeviceTypeUSBSIMReader && len(tail) > 0 {
operation := strings.Join(tail, "/") operation := strings.Join(tail, "/")
unsupported := tail[0] == "network" || tail[0] == "operator_selection" || unsupported := tail[0] == "network" || tail[0] == "operator_selection" ||
@@ -675,14 +653,6 @@ func (s *Server) handleDevicePath(
return true return true
} }
func native410UnsupportedOperation(tail []string) bool {
if len(tail) == 0 {
return false
}
operation := strings.Join(tail, "/")
return tail[0] == "calls" || operation == "actions/reboot"
}
func (s *Server) handleUSBNetMode(w http.ResponseWriter, r *http.Request, physicalID string) bool { func (s *Server) handleUSBNetMode(w http.ResponseWriter, r *http.Request, physicalID string) bool {
switch r.Method { switch r.Method {
case http.MethodGet: case http.MethodGet:
@@ -1059,26 +1029,6 @@ func (s *Server) handleAT(w http.ResponseWriter, r *http.Request, id string) boo
defer cancel() defer cancel()
response, err := s.devices.ExecuteAT(ctx, id, command) response, err := s.devices.ExecuteAT(ctx, id, command)
if err != nil { if err != nil {
var commandErr *modem.CommandError
if errors.As(err, &commandErr) {
// The modem answered with ERROR / +CME ERROR. An AT terminal must
// surface that text (including the CME detail) as a normal response;
// folding it into a 502 hides the real reason from the user.
text := strings.Join(commandErr.Lines, "\n")
if text != "" {
text += "\n"
}
text += commandErr.Final
writeJSON(w, http.StatusOK, map[string]any{
"data": map[string]any{
"response": text,
"final": commandErr.Final,
"duration_ms": 0,
"urcs": []string{},
},
})
return true
}
s.writeDeviceError(w, err) s.writeDeviceError(w, err)
return true return true
} }
@@ -1445,9 +1395,9 @@ func (s *Server) writeDeviceError(w http.ResponseWriter, err error) {
case errors.Is(err, context.Canceled): case errors.Is(err, context.Canceled):
writeError(w, http.StatusRequestTimeout, "request_canceled", "the modem request was canceled") writeError(w, http.StatusRequestTimeout, "request_canceled", "the modem request was canceled")
default: default:
// Preserve the hardware failure reason in the operator-visible log while // Device errors may echo an AT command. Authentication commands can
// keeping AT payloads and long APDU material out of it. // contain APN credentials, so keep raw errors out of logs and responses.
s.logger.Warn("device operation failed", "error", device.HardwareErrorDetail(err)) s.logger.Warn("device operation failed")
writeError(w, http.StatusBadGateway, "modem_error", "the device operation failed") writeError(w, http.StatusBadGateway, "modem_error", "the device operation failed")
} }
} }
@@ -1522,13 +1472,7 @@ func physicalMatchesConfig(entry device.Device, config store.Device) bool {
return config.ModemIMEI == entry.Snapshot.IMEI return config.ModemIMEI == entry.Snapshot.IMEI
} }
if config.USBPath != "" && candidate.USBPath != "" { if config.USBPath != "" && candidate.USBPath != "" {
if config.USBPath == candidate.USBPath { return config.USBPath == candidate.USBPath
return true
}
// Sysfs paths may be stored through /sys/class symlinks while a
// subsequent discovery returns the resolved device path. Keep checking
// the selected AT/QMI nodes instead of rejecting a modem whose physical
// path spelling changed but whose control plane is unchanged.
} }
// Control and serial device nodes are allocation-order dependent. They are // Control and serial device nodes are allocation-order dependent. They are
// only legacy fallbacks when no physical USB path or readable IMEI exists. // only legacy fallbacks when no physical USB path or readable IMEI exists.
@@ -1710,60 +1654,56 @@ func storedVoWiFiRuntime(runtime store.VoWiFiRuntime) map[string]any {
enabled, _ := extra["enabled"].(bool) enabled, _ := extra["enabled"].(bool)
active, _ := extra["active"].(bool) active, _ := extra["active"].(bool)
return map[string]any{ return map[string]any{
"device_id": runtime.DeviceID, "device_id": runtime.DeviceID,
"phase": runtime.Phase, "phase": runtime.Phase,
"enabled": enabled, "enabled": enabled,
"active": active, "active": active,
"carrier_profile": extra["carrier_profile"], "dataplane_mode": runtime.DataplaneMode,
"carrier_profile_from": extra["carrier_profile_from"], "iccid": runtime.ICCID,
"dataplane_mode": runtime.DataplaneMode, "imsi": runtime.IMSI,
"iccid": runtime.ICCID, "sim_ready": runtime.SIMReady,
"imsi": runtime.IMSI, "access_ready": runtime.AccessReady,
"sim_ready": runtime.SIMReady, "tunnel_ready": runtime.TunnelReady,
"access_ready": runtime.AccessReady, "ims_ready": runtime.IMSReady,
"tunnel_ready": runtime.TunnelReady, "sms_ready": runtime.SMSReady,
"ims_ready": runtime.IMSReady, "reg_status": runtime.RegStatus,
"sms_ready": runtime.SMSReady, "reg_status_text": runtime.RegStatusText,
"reg_status": runtime.RegStatus, "network_mode": runtime.NetworkMode,
"reg_status_text": runtime.RegStatusText, "local_phone": runtime.LocalPhone,
"network_mode": runtime.NetworkMode, "phone_number_source": runtime.PhoneNumberSource,
"local_phone": runtime.LocalPhone, "last_error_class": runtime.LastErrorClass,
"phone_number_source": runtime.PhoneNumberSource, "last_error": runtime.LastError,
"last_error_class": runtime.LastErrorClass, "last_reason": runtime.LastReason,
"last_error": runtime.LastError, "updated_at": runtime.UpdatedAt,
"last_reason": runtime.LastReason, "tunnel": rawJSONObject(runtime.Tunnel),
"updated_at": runtime.UpdatedAt, "imscore": rawJSONObject(runtime.IMSCore),
"tunnel": rawJSONObject(runtime.Tunnel), "smsip": rawJSONObject(runtime.SMSIP),
"imscore": rawJSONObject(runtime.IMSCore),
"smsip": rawJSONObject(runtime.SMSIP),
} }
} }
func liveVoWiFiRuntime(runtime vowifi.State) map[string]any { func liveVoWiFiRuntime(runtime vowifi.State) map[string]any {
return map[string]any{ return map[string]any{
"device_id": runtime.DeviceID, "device_id": runtime.DeviceID,
"phase": string(runtime.Phase), "phase": string(runtime.Phase),
"enabled": runtime.Enabled, "enabled": runtime.Enabled,
"active": runtime.Active, "active": runtime.Active,
"carrier_profile": runtime.CarrierProfile, "dataplane_mode": runtime.DataplaneMode,
"carrier_profile_from": runtime.CarrierProfileFrom, "iccid": runtime.ICCID,
"dataplane_mode": runtime.DataplaneMode, "imsi": runtime.IMSI,
"iccid": runtime.ICCID, "sim_ready": runtime.SIMReady,
"imsi": runtime.IMSI, "access_ready": runtime.AccessReady,
"sim_ready": runtime.SIMReady, "tunnel_ready": runtime.TunnelReady,
"access_ready": runtime.AccessReady, "ims_ready": runtime.IMSReady,
"tunnel_ready": runtime.TunnelReady, "sms_ready": runtime.SMSReady,
"ims_ready": runtime.IMSReady, "reg_status": map[bool]int{true: 1, false: 0}[runtime.IMSReady],
"sms_ready": runtime.SMSReady, "reg_status_text": map[bool]string{true: "registered", false: "not registered"}[runtime.IMSReady],
"reg_status": map[bool]int{true: 1, false: 0}[runtime.IMSReady], "network_mode": "Wi-Fi",
"reg_status_text": map[bool]string{true: "registered", false: "not registered"}[runtime.IMSReady], "local_phone": runtime.PhoneNumber,
"network_mode": "Wi-Fi", "phone_number_source": runtime.PhoneNumberSource,
"local_phone": runtime.PhoneNumber, "last_error_class": runtime.LastErrorClass,
"phone_number_source": runtime.PhoneNumberSource, "last_error": runtime.LastError,
"last_error_class": runtime.LastErrorClass, "last_reason": runtime.LastReason,
"last_error": runtime.LastError, "updated_at": runtime.UpdatedAt,
"last_reason": runtime.LastReason,
"updated_at": runtime.UpdatedAt,
"tunnel": map[string]any{ "tunnel": map[string]any{
"established": runtime.TunnelReady, "established": runtime.TunnelReady,
"name": runtime.TunnelName, "name": runtime.TunnelName,
@@ -1937,8 +1877,6 @@ func fillConfigFromPhysical(config *store.Device, entry device.Device) {
config.NetworkEnabled = false config.NetworkEnabled = false
config.SMSEnabled = true config.SMSEnabled = true
config.VoWiFiEnabled = true config.VoWiFiEnabled = true
} else if modem.IsDJI4GUSB(candidate.VendorID, candidate.ProductID) {
config.DeviceType = store.DeviceTypeDJI4G
} }
if config.Interface == "" { if config.Interface == "" {
config.Interface = candidate.NetworkInterface config.Interface = candidate.NetworkInterface
@@ -1963,16 +1901,6 @@ func fillConfigFromPhysical(config *store.Device, entry device.Device) {
} }
} }
func discoveredDeviceType(candidate modem.Candidate) string {
if candidate.HardwareKind == "pcsc" {
return store.DeviceTypeUSBSIMReader
}
if modem.IsDJI4GUSB(candidate.VendorID, candidate.ProductID) {
return store.DeviceTypeDJI4G
}
return ""
}
func modemSummary(snapshot *device.Snapshot, phone string, phoneSource string) map[string]any { func modemSummary(snapshot *device.Snapshot, phone string, phoneSource string) map[string]any {
if snapshot == nil { if snapshot == nil {
return map[string]any{ return map[string]any{
@@ -1,72 +0,0 @@
package server
import (
"context"
"net/http"
"net/http/httptest"
"strings"
"testing"
"vocat/internal/device"
"vocat/internal/modem"
"vocat/internal/store"
)
type discoverySnapshotController struct {
fakeDeviceController
entries []device.Device
discoverCalls int
}
func (controller *discoverySnapshotController) Discover(context.Context) ([]device.Device, error) {
controller.discoverCalls++
return append([]device.Device(nil), controller.entries...), nil
}
func TestDiscoveredDevicesPerformsFreshScanAndOmitsAbsentEntries(t *testing.T) {
database, err := store.Open(context.Background(), ":memory:")
if err != nil {
t.Fatalf("store.Open: %v", err)
}
t.Cleanup(func() { _ = database.Close() })
controller := &discoverySnapshotController{
fakeDeviceController: fakeDeviceController{entry: device.Device{
ID: "stale-device", Discovered: false,
Candidate: modem.Candidate{ID: "stale-device", USBPath: "1-1"},
}},
entries: []device.Device{
{
ID: "current-device", Discovered: true,
Candidate: modem.Candidate{ID: "current-device", USBPath: "2-1"},
},
{
ID: "absent-device", Discovered: false,
Candidate: modem.Candidate{ID: "absent-device", USBPath: "3-1"},
},
},
}
server := &Server{
store: database, logger: regionTestLogger(),
maxRequestBodyBytes: 4096, devices: controller,
}
request := httptest.NewRequest(http.MethodGet, "/api/devices/discovered", nil)
recorder := httptest.NewRecorder()
if !server.handleDiscoveredDevices(recorder, request) {
t.Fatal("handleDiscoveredDevices returned false")
}
if recorder.Code != http.StatusOK {
t.Fatalf("status = %d, body = %s", recorder.Code, recorder.Body.String())
}
if controller.discoverCalls != 1 {
t.Fatalf("Discover calls = %d, want 1", controller.discoverCalls)
}
body := recorder.Body.String()
if !strings.Contains(body, "current-device") {
t.Fatalf("response omits current device: %s", body)
}
if strings.Contains(body, "stale-device") || strings.Contains(body, "absent-device") {
t.Fatalf("response contains an absent device: %s", body)
}
}
@@ -31,29 +31,6 @@ func decodeData(t *testing.T, recorder *httptest.ResponseRecorder) map[string]an
return envelope.Data return envelope.Data
} }
func TestNative410UnsupportedOperations(t *testing.T) {
tests := []struct {
path []string
unsupported bool
}{
{path: []string{"esim"}},
{path: []string{"esim", "profiles"}},
{path: []string{"vowifi"}},
{path: []string{"vowifi", "actions", "reconnect"}},
{path: []string{"calls"}, unsupported: true},
{path: []string{"actions", "reboot"}, unsupported: true},
{path: []string{"actions", "refresh"}},
{path: []string{"actions", "at"}},
{path: []string{"flight-mode"}},
{path: []string{"operator_selection"}},
}
for _, test := range tests {
if got := native410UnsupportedOperation(test.path); got != test.unsupported {
t.Errorf("native410UnsupportedOperation(%v) = %v, want %v", test.path, got, test.unsupported)
}
}
}
func TestParseModemAPNProfiles(t *testing.T) { func TestParseModemAPNProfiles(t *testing.T) {
profiles := parseModemAPNProfiles([]string{ profiles := parseModemAPNProfiles([]string{
`+CGDCONT: 1,"IPV4V6","internet","0.0.0.0",0,0`, `+CGDCONT: 1,"IPV4V6","internet","0.0.0.0",0,0`,
@@ -140,27 +117,6 @@ func TestPhysicalMatchesConfigRejectsDuplicateAndroidSerialAlias(t *testing.T) {
} }
} }
func TestPhysicalMatchesConfigFallsBackWhenWWANSysfsPathWasResolved(t *testing.T) {
config := store.Device{
ID: "wwan0",
USBPath: "/sys/class/wwan/wwan0",
ATPort: "/dev/wwan0at0",
ControlDevice: "/dev/wwan0qmi0",
}
entry := device.Device{
ID: "mhi-wwan0",
Candidate: modem.Candidate{
USBPath: "/sys/devices/platform/soc/4080000.remoteproc/wwan/wwan0",
ATPort: modem.Port{Path: "/dev/wwan0at0"},
QMIControl: "/dev/wwan0qmi0",
HardwareKind: "wwan",
},
}
if !physicalMatchesConfig(entry, config) {
t.Fatal("resolved WWAN sysfs path should fall back to matching control nodes")
}
}
func TestFindDiscoveredDevicePrefersPhysicalIdentityOverSerialAlias(t *testing.T) { func TestFindDiscoveredDevicePrefersPhysicalIdentityOverSerialAlias(t *testing.T) {
alias := "/dev/serial/by-id/usb-Android_Android-if02-port0" alias := "/dev/serial/by-id/usb-Android_Android-if02-port0"
devices := []device.Device{ devices := []device.Device{
-18
View File
@@ -6,28 +6,10 @@ import (
"time" "time"
"vocat/internal/device" "vocat/internal/device"
"vocat/internal/modem"
"vocat/internal/store" "vocat/internal/store"
"vocat/internal/vowifi" "vocat/internal/vowifi"
) )
func TestFillConfigFromPhysicalClassifiesDJI4G(t *testing.T) {
config := store.Device{DeviceType: store.DeviceTypePCIeEC20EC25}
entry := device.Device{Candidate: modem.Candidate{
VendorID: "2ca3",
ProductID: "4006",
}}
fillConfigFromPhysical(&config, entry)
if config.DeviceType != store.DeviceTypeDJI4G {
t.Fatalf("device type = %q, want %q", config.DeviceType, store.DeviceTypeDJI4G)
}
if got := discoveredDeviceType(entry.Candidate); got != store.DeviceTypeDJI4G {
t.Fatalf("discovered device type = %q, want %q", got, store.DeviceTypeDJI4G)
}
}
func TestConfiguredDeviceSummaryIgnoresVoWiFiRuntimeFromPreviousSIM(t *testing.T) { func TestConfiguredDeviceSummaryIgnoresVoWiFiRuntimeFromPreviousSIM(t *testing.T) {
database, err := store.Open(context.Background(), ":memory:") database, err := store.Open(context.Background(), ":memory:")
if err != nil { if err != nil {
+4 -69
View File
@@ -11,7 +11,6 @@ import (
"vocat/internal/device" "vocat/internal/device"
"vocat/internal/store" "vocat/internal/store"
"vocat/internal/vowifi"
) )
func esimUnavailable(w http.ResponseWriter) { func esimUnavailable(w http.ResponseWriter) {
@@ -401,41 +400,15 @@ func (s *Server) handleEsimSwitch(w http.ResponseWriter, r *http.Request, config
writeError(w, http.StatusBadRequest, "invalid_request", "iccid is required") writeError(w, http.StatusBadRequest, "invalid_request", "iccid is required")
return return
} }
endMaintenance := func() {}
if maintenance, ok := s.vowifi.(VoWiFiMaintenanceController); ok {
if err := maintenance.BeginMaintenance(configuredID); err != nil {
s.writeDeviceError(w, fmt.Errorf("prepare VoWiFi for profile switch: %w", err))
return
}
released := false
endMaintenance = func() {
if !released {
released = true
maintenance.EndMaintenance(configuredID)
}
}
defer endMaintenance()
}
// A live VoWiFi runtime owns the SIM/QMI session while AKA, IMS and SMS are
// active. Tear it down before touching flight mode or the ISD-R logical
// channel; otherwise native-WWAN devices wait on the QMI lease until the HTTP
// request times out. This only changes the runtime desired state. The saved
// per-ICCID policy is left intact and the target profile's policy is restored
// after the verified switch below.
if err := s.quiesceVoWiFiForProfileSwitch(r.Context(), configuredID); err != nil {
s.writeDeviceError(w, err)
return
}
// Profile operations run with RF disabled. The eUICC remains accessible in // Profile operations run with RF disabled. The eUICC remains accessible in
// CFUN=4. Devices that consume the requested eUICC REFRESH stay online; // CFUN=4, and the recovery path reapplies CFUN=4 as soon as the AT port comes
// older AT modems enter the reset recovery path and reapply CFUN=4 when the // back after the mandatory modem reset.
// port returns.
if _, err := s.devices.SetFlight(r.Context(), physicalID, true); err != nil { if _, err := s.devices.SetFlight(r.Context(), physicalID, true); err != nil {
s.writeDeviceError(w, err) s.writeDeviceError(w, err)
return return
} }
// A confirmed profile switch always includes a live ICCID read and may also // A confirmed profile switch includes the EC20 reset and a live ICCID read,
// include the EC20 reset fallback, so it can exceed the ordinary deadline. // which normally takes longer than the server's ordinary response deadline.
controller := http.NewResponseController(w) controller := http.NewResponseController(w)
_ = controller.SetWriteDeadline(time.Time{}) _ = controller.SetWriteDeadline(time.Time{})
aidHex := firstNonEmpty(request.AIDHex, request.AIDHexCamel) aidHex := firstNonEmpty(request.AIDHex, request.AIDHexCamel)
@@ -481,10 +454,6 @@ func (s *Server) handleEsimSwitch(w http.ResponseWriter, r *http.Request, config
s.writeStoreError(w, err) s.writeStoreError(w, err)
return return
} }
// The target profile is now active and its persisted policy has replaced the
// old runtime configuration. Allow reconciliation again before requesting
// the target profile's desired VoWiFi state.
endMaintenance()
canRestoreFlightImmediately := s.vowifi == nil canRestoreFlightImmediately := s.vowifi == nil
if s.vowifi != nil { if s.vowifi != nil {
state, stateErr := s.vowifi.State(configuredID) state, stateErr := s.vowifi.State(configuredID)
@@ -515,40 +484,6 @@ func (s *Server) handleEsimSwitch(w http.ResponseWriter, r *http.Request, config
}}) }})
} }
func (s *Server) quiesceVoWiFiForProfileSwitch(ctx context.Context, configuredID string) error {
if s.vowifi == nil {
return nil
}
state, err := s.vowifi.State(configuredID)
if err != nil {
return fmt.Errorf("stop VoWiFi before switching profile: %w", err)
}
if !state.Enabled && !state.Active && state.Phase == vowifi.PhaseIdle {
return nil
}
if _, err := s.vowifi.RequestEnabled(configuredID, false); err != nil {
return fmt.Errorf("stop VoWiFi before switching profile: %w", err)
}
waitContext, cancel := context.WithTimeout(ctx, 45*time.Second)
defer cancel()
ticker := time.NewTicker(100 * time.Millisecond)
defer ticker.Stop()
for {
state, err = s.vowifi.State(configuredID)
if err != nil {
return fmt.Errorf("wait for VoWiFi to stop before switching profile: %w", err)
}
if !state.Enabled && !state.Active && state.Phase == vowifi.PhaseIdle {
return nil
}
select {
case <-waitContext.Done():
return fmt.Errorf("wait for VoWiFi to stop before switching profile: %w", waitContext.Err())
case <-ticker.C:
}
}
}
func (s *Server) handleEsimDisable(w http.ResponseWriter, r *http.Request, physicalID string, physicalPresent bool) { func (s *Server) handleEsimDisable(w http.ResponseWriter, r *http.Request, physicalID string, physicalPresent bool) {
if s.devices == nil { if s.devices == nil {
writeError(w, http.StatusServiceUnavailable, "device_manager_unavailable", "device manager is unavailable") writeError(w, http.StatusServiceUnavailable, "device_manager_unavailable", "device manager is unavailable")
+1 -1
View File
@@ -506,7 +506,7 @@ func (s *Server) handlePasswordChange(w http.ResponseWriter, r *http.Request) {
switch { switch {
case errors.Is(err, auth.ErrInvalidCredentials): case errors.Is(err, auth.ErrInvalidCredentials):
writeError(w, http.StatusUnauthorized, "invalid_credentials", "current password is incorrect") writeError(w, http.StatusUnauthorized, "invalid_credentials", "current password is incorrect")
case errors.Is(err, auth.ErrEmptyPassword): case strings.Contains(err.Error(), "between 12 and 1024"):
writeError(w, http.StatusBadRequest, "weak_password", err.Error()) writeError(w, http.StatusBadRequest, "weak_password", err.Error())
case strings.Contains(err.Error(), "must differ"): case strings.Contains(err.Error(), "must differ"):
writeError(w, http.StatusBadRequest, "password_reused", err.Error()) writeError(w, http.StatusBadRequest, "password_reused", err.Error())
-52
View File
@@ -1,52 +0,0 @@
package server
import (
"context"
"fmt"
"net/http"
"runtime"
"time"
)
func (s *Server) handleLiveness(w http.ResponseWriter, r *http.Request) {
if !requireMethod(w, r, http.MethodGet) {
return
}
w.Header().Set("Cache-Control", "no-store")
writeJSON(w, http.StatusOK, map[string]any{"status": "ok"})
}
func (s *Server) handleReadiness(w http.ResponseWriter, r *http.Request) {
if !requireMethod(w, r, http.MethodGet) {
return
}
ctx, cancel := context.WithTimeout(r.Context(), 2*time.Second)
defer cancel()
if err := s.store.Ready(ctx); err != nil {
writeJSON(w, http.StatusServiceUnavailable, map[string]any{"status": "not_ready"})
return
}
w.Header().Set("Cache-Control", "no-store")
writeJSON(w, http.StatusOK, map[string]any{"status": "ready"})
}
// handleMetrics exposes only process-level, non-identifying Prometheus data.
// Device IDs, SIM identities, phone numbers and proxy information never enter
// this unauthenticated endpoint.
func (s *Server) handleMetrics(w http.ResponseWriter, r *http.Request) {
if !requireMethod(w, r, http.MethodGet) {
return
}
ready := 0
ctx, cancel := context.WithTimeout(r.Context(), time.Second)
if s.store.Ready(ctx) == nil {
ready = 1
}
cancel()
w.Header().Set("Content-Type", "text/plain; version=0.0.4; charset=utf-8")
w.Header().Set("Cache-Control", "no-store")
fmt.Fprint(w, "# HELP vocat_up Whether the process is running.\n# TYPE vocat_up gauge\nvocat_up 1\n")
fmt.Fprintf(w, "# HELP vocat_ready Whether the database is ready.\n# TYPE vocat_ready gauge\nvocat_ready %d\n", ready)
fmt.Fprintf(w, "# HELP vocat_uptime_seconds Process uptime.\n# TYPE vocat_uptime_seconds counter\nvocat_uptime_seconds %.0f\n", time.Since(s.startedAt).Seconds())
fmt.Fprintf(w, "# HELP vocat_go_goroutines Current Go goroutines.\n# TYPE vocat_go_goroutines gauge\nvocat_go_goroutines %d\n", runtime.NumGoroutine())
}
-67
View File
@@ -1,67 +0,0 @@
package server
import (
"io"
"net/http"
"strings"
"testing"
)
func TestOperationalHealthEndpointsAreAnonymousAndNonIdentifying(t *testing.T) {
app := newTestApplication(t)
tests := []struct {
path string
contentType string
contains string
}{
{path: "/healthz", contentType: "application/json", contains: `"status":"ok"`},
{path: "/readyz", contentType: "application/json", contains: `"status":"ready"`},
{path: "/metrics", contentType: "text/plain", contains: "vocat_ready 1"},
}
for _, test := range tests {
t.Run(test.path, func(t *testing.T) {
response, err := app.client.Get(app.server.URL + test.path)
if err != nil {
t.Fatal(err)
}
defer response.Body.Close()
body, err := io.ReadAll(response.Body)
if err != nil {
t.Fatal(err)
}
if response.StatusCode != http.StatusOK {
t.Fatalf("status = %d, body = %s", response.StatusCode, body)
}
if !strings.Contains(response.Header.Get("Content-Type"), test.contentType) {
t.Fatalf("Content-Type = %q", response.Header.Get("Content-Type"))
}
if !strings.Contains(string(body), test.contains) {
t.Fatalf("body = %q, want %q", body, test.contains)
}
for _, forbidden := range []string{"imsi", "iccid", "msisdn", "proxy", "device_id"} {
if strings.Contains(strings.ToLower(string(body)), forbidden) {
t.Fatalf("body exposes forbidden label %q: %s", forbidden, body)
}
}
})
}
}
func TestOperationalHealthEndpointsRejectPOST(t *testing.T) {
app := newTestApplication(t)
for _, path := range []string{"/healthz", "/readyz", "/metrics"} {
request, err := http.NewRequest(http.MethodPost, app.server.URL+path, nil)
if err != nil {
t.Fatal(err)
}
response, err := app.client.Do(request)
if err != nil {
t.Fatal(err)
}
response.Body.Close()
if response.StatusCode != http.StatusMethodNotAllowed {
t.Fatalf("%s status = %d, want %d", path, response.StatusCode, http.StatusMethodNotAllowed)
}
}
}
-468
View File
@@ -1,468 +0,0 @@
package server
import (
"net/http"
"strconv"
"strings"
"sync"
"time"
)
// hostStaticInfo describes hardware identities that do not change while the
// process runs, so they are probed once and cached.
type hostStaticInfo struct {
CPUModel string `json:"cpu_model"`
BoardModel string `json:"board_model"`
MemoryModel string `json:"memory_model"`
DiskModel string `json:"disk_model"`
}
// hostPerfSnapshot is one rendered read of host utilization for the dashboard.
type hostPerfSnapshot struct {
CPUPercent float64 `json:"cpu_percent"`
MemoryPercent float64 `json:"memory_percent"`
MemoryUsed uint64 `json:"memory_used_bytes"`
MemoryTotal uint64 `json:"memory_total_bytes"`
DiskPercent float64 `json:"disk_percent"`
DiskUsed uint64 `json:"disk_used_bytes"`
DiskTotal uint64 `json:"disk_total_bytes"`
NetRxBps float64 `json:"net_rx_bps"`
NetTxBps float64 `json:"net_tx_bps"`
}
// hostCPUTimes is one cumulative /proc/stat reading: idle already includes
// iowait, total sums every other column (guest time is already folded into
// user/nice and therefore excluded).
type hostCPUTimes struct {
idle uint64
total uint64
}
const (
// hostStatsMinGap keeps back-to-back polls from dividing a handful of
// jiffies by a few milliseconds; the previous rate is reused instead.
hostStatsMinGap = 300 * time.Millisecond
// hostStatsMaxGap mirrors liveNetMaxGap: a gap past this means the tab was
// closed or the browser was hidden; re-baseline instead of averaging a
// long dead interval.
hostStatsMaxGap = 15 * time.Second
// hostStatsFirstSample is how long the very first request blocks so CPU
// and network readings have a real interval to average over. It must
// exceed hostStatsMinGap so the re-read survives the min-gap guard below.
hostStatsFirstSample = 400 * time.Millisecond
)
// hostStatsSampler derives live host utilization from cumulative kernel
// counters. Like liveNetTracker it is driven on demand by dashboard polling,
// so no background goroutine is required.
type hostStatsSampler struct {
mu sync.Mutex
static *hostStaticInfo
sampledAt time.Time
prevCPU hostCPUTimes
prevNetRx uint64
prevNetTx uint64
lastCPU float64
lastRxBps float64
lastTxBps float64
}
func newHostStatsSampler() *hostStatsSampler {
return &hostStatsSampler{}
}
// handleDashboardHost serves the dashboard host card: static hardware identity
// plus live utilization. Both halves are cheap reads of /proc and /sys.
func (s *Server) handleDashboardHost(w http.ResponseWriter, r *http.Request) {
if !requireMethod(w, r, http.MethodGet) {
return
}
writeJSON(w, http.StatusOK, map[string]any{"data": map[string]any{
"host": s.hostStats.info(),
"perf": s.hostStats.perf(),
}})
}
// info returns the cached static hardware description, probing it on first use.
func (s *hostStatsSampler) info() hostStaticInfo {
s.mu.Lock()
defer s.mu.Unlock()
if s.static == nil {
info := probeHostStatic()
s.static = &info
}
return *s.static
}
// perf renders one utilization snapshot. CPU and network rates need a baseline,
// so the first-ever call takes a short inline second reading; later calls
// average against the previous request.
func (s *hostStatsSampler) perf() hostPerfSnapshot {
s.mu.Lock()
defer s.mu.Unlock()
now := time.Now()
cpu, cpuOK := readHostCPUTimes()
rx, tx, netOK := readHostNetTotals()
// No usable baseline yet (first request, or the tab was hidden past the
// max gap): establish one, then re-read after a short interval so the
// first dashboard paint already reports real numbers.
needBaseline := s.sampledAt.IsZero() || now.Sub(s.sampledAt) > hostStatsMaxGap
if needBaseline && (cpuOK || netOK) {
s.sampledAt = now
if cpuOK {
s.prevCPU = cpu
}
if netOK {
s.prevNetRx, s.prevNetTx = rx, tx
}
time.Sleep(hostStatsFirstSample)
now = time.Now()
if next, ok := readHostCPUTimes(); ok {
cpu, cpuOK = next, true
}
if nextRx, nextTx, ok := readHostNetTotals(); ok {
rx, tx, netOK = nextRx, nextTx, true
}
}
memPercent, memUsed, memTotal := readHostMemory()
diskPercent, diskUsed, diskTotal := readHostDisk()
gap := now.Sub(s.sampledAt)
if gap >= hostStatsMinGap && (cpuOK || netOK) {
if cpuOK {
if busyDelta, totalDelta := cpuDelta(s.prevCPU, cpu); totalDelta > 0 {
s.lastCPU = clampPercent(float64(busyDelta) * 100 / float64(totalDelta))
}
s.prevCPU = cpu
}
if netOK {
// Counter resets (interface flap) must not produce a giant spike.
if rx >= s.prevNetRx {
s.lastRxBps = float64(rx-s.prevNetRx) / gap.Seconds()
} else {
s.lastRxBps = 0
}
if tx >= s.prevNetTx {
s.lastTxBps = float64(tx-s.prevNetTx) / gap.Seconds()
} else {
s.lastTxBps = 0
}
s.prevNetRx, s.prevNetTx = rx, tx
}
s.sampledAt = now
}
return hostPerfSnapshot{
CPUPercent: s.lastCPU,
MemoryPercent: memPercent,
MemoryUsed: memUsed,
MemoryTotal: memTotal,
DiskPercent: diskPercent,
DiskUsed: diskUsed,
DiskTotal: diskTotal,
NetRxBps: s.lastRxBps,
NetTxBps: s.lastTxBps,
}
}
// cpuDelta returns the busy and total jiffies elapsed between two cumulative
// readings. A backwards counter (theoretically impossible for /proc/stat)
// reports zero rather than wrapping.
func cpuDelta(prev, next hostCPUTimes) (busy, total uint64) {
if next.total <= prev.total || next.idle < prev.idle {
return 0, 0
}
totalDelta := next.total - prev.total
idleDelta := next.idle - prev.idle
if idleDelta >= totalDelta {
return 0, totalDelta
}
return totalDelta - idleDelta, totalDelta
}
func clampPercent(value float64) float64 {
switch {
case value < 0:
return 0
case value > 100:
return 100
default:
return value
}
}
// hostNetIgnoredPrefixes are virtual interface name prefixes whose counters
// would double-count physical traffic (bridges, tunnels, vocat's own links) or
// carry no real host traffic at all.
var hostNetIgnoredPrefixes = []string{
"lo", "br-", "docker", "veth", "virbr", "vmnet", "vboxnet",
"ip6tnl", "ip6gre", "sit", "gre", "gretap", "erspan",
"tun", "tap", "utun", "vocat", "wg", "zt", "tailscale",
"ifb", "bond", "vlan", "macvlan", "dummy", "lxc", "cali", "flannel", "cni",
}
// hostNetInterfaceCounted reports whether an interface's byte counters feed the
// host-level upload/download rates.
func hostNetInterfaceCounted(name string) bool {
name = strings.TrimSpace(name)
if name == "" {
return false
}
for _, prefix := range hostNetIgnoredPrefixes {
if strings.HasPrefix(name, prefix) {
return false
}
}
return true
}
// parseNetDevCounters sums rx/tx bytes across counted interfaces in
// /proc/net/dev content.
func parseNetDevCounters(content string) (rx, tx uint64) {
for _, line := range strings.Split(content, "\n") {
name, rest, found := strings.Cut(line, ":")
if !found || !hostNetInterfaceCounted(name) {
continue
}
fields := strings.Fields(rest)
if len(fields) < 9 {
continue
}
rxBytes, okRx := parseUint(fields[0])
txBytes, okTx := parseUint(fields[8])
if !okRx || !okTx {
continue
}
rx += rxBytes
tx += txBytes
}
return rx, tx
}
func parseUint(text string) (uint64, bool) {
value, err := strconv.ParseUint(strings.TrimSpace(text), 10, 64)
return value, err == nil
}
// parseCPUTimes parses the aggregate "cpu" line of /proc/stat.
func parseCPUTimes(line string) (hostCPUTimes, bool) {
fields := strings.Fields(line)
// cpu user nice system idle iowait irq softirq steal [guest guest_nice]
if len(fields) < 9 || fields[0] != "cpu" {
return hostCPUTimes{}, false
}
var times hostCPUTimes
for index, field := range fields[1:9] {
value, ok := parseUint(field)
if !ok {
return hostCPUTimes{}, false
}
times.total += value
if index == 3 || index == 4 { // idle + iowait
times.idle += value
}
}
return times, true
}
// parseMeminfo extracts MemTotal and MemAvailable (bytes) from /proc/meminfo.
func parseMeminfo(content string) (total, available uint64, ok bool) {
for _, line := range strings.Split(content, "\n") {
key, rest, found := strings.Cut(line, ":")
if !found {
continue
}
var value uint64
switch strings.TrimSpace(key) {
case "MemTotal":
value, ok = parseUint(strings.TrimSpace(strings.TrimSuffix(strings.TrimSpace(rest), "kB")))
if ok {
total = value * 1024
}
case "MemAvailable":
if value, parsed := parseUint(strings.TrimSpace(strings.TrimSuffix(strings.TrimSpace(rest), "kB"))); parsed {
available = value * 1024
}
}
}
return total, available, total > 0
}
// parseCPUInfoModel returns the x86-style "model name" from /proc/cpuinfo, or
// an empty string on ARM hosts that only carry CPU part numbers.
func parseCPUInfoModel(content string) string {
for _, line := range strings.Split(content, "\n") {
key, value, found := strings.Cut(line, ":")
if !found {
continue
}
switch strings.TrimSpace(key) {
case "model name", "Model", "Hardware":
if model := strings.TrimSpace(value); model != "" {
return model
}
}
}
return ""
}
// parseCPUInfoPart returns the first ARM "CPU part" hex identifier (e.g.
// 0xd03) and the number of processors listed.
func parseCPUInfoPart(content string) (part string, processors int) {
for _, line := range strings.Split(content, "\n") {
key, value, found := strings.Cut(line, ":")
if !found {
continue
}
switch strings.TrimSpace(key) {
case "processor":
processors++
case "CPU part":
if part == "" {
part = strings.ToLower(strings.TrimSpace(value))
}
}
}
return part, processors
}
// armCPUPartNames maps ARM CPU part identifiers to marketing core names.
var armCPUPartNames = map[string]string{
"0xd03": "Cortex-A53",
"0xd04": "Cortex-A35",
"0xd05": "Cortex-A55",
"0xd06": "Cortex-A65",
"0xd07": "Cortex-A57",
"0xd08": "Cortex-A72",
"0xd09": "Cortex-A73",
"0xd0a": "Cortex-A75",
"0xd0b": "Cortex-A76",
"0xd0c": "Neoverse-N1",
"0xd0d": "Cortex-A77",
"0xd0e": "Cortex-A76AE",
"0xd40": "Neoverse-V1",
"0xd41": "Cortex-A78",
"0xd42": "Cortex-A78AE",
"0xd44": "Cortex-X1",
"0xd46": "Cortex-A510",
"0xd47": "Cortex-A710",
"0xd48": "Cortex-X2",
"0xd4b": "Cortex-A715",
"0xd4d": "Cortex-A520",
"0xd4e": "Cortex-X3",
}
// socVendorNames prettifies the vendor half of a device-tree compatible entry.
var socVendorNames = map[string]string{
"allwinner": "Allwinner",
"amlogic": "Amlogic",
"broadcom": "Broadcom",
"mediatek": "MediaTek",
"nvidia": "NVIDIA",
"qualcomm": "Qualcomm",
"raspberrypi": "Raspberry Pi",
"rockchip": "Rockchip",
"samsung": "Samsung",
"ti": "TI",
"xunlong": "Xunlong",
}
// parseCompatibleSoC extracts the SoC half of a device-tree compatible list
// (NUL-separated, most specific first): "xunlong,orangepi-zero3\0allwinner,
// sun50i-h618\0" yields "Allwinner sun50i-h618".
func parseCompatibleSoC(raw string) string {
entries := strings.FieldsFunc(raw, func(r rune) bool { return r == 0 || r == '\n' })
// The last entry is the least specific compatible, which on ARM boards is
// the SoC rather than the board.
for index := len(entries) - 1; index >= 0; index-- {
entry := strings.TrimSpace(entries[index])
vendor, soc, found := strings.Cut(entry, ",")
if !found || soc == "" {
continue
}
if pretty, ok := socVendorNames[strings.ToLower(vendor)]; ok {
vendor = pretty
} else {
vendor = strings.ToUpper(vendor[:1]) + vendor[1:]
}
return vendor + " " + soc
}
return ""
}
// composeARMCPUModel renders e.g. "Allwinner sun50i-h618 · 4× Cortex-A53".
func composeARMCPUModel(soc, part string, processors int) string {
core := armCPUPartNames[part]
var result string
switch {
case soc != "" && core != "" && processors > 0:
result = soc + " · " + strconv.Itoa(processors) + "× " + core
case soc != "" && processors > 0:
result = soc + " · " + strconv.Itoa(processors) + "× CPU"
case soc != "" && core != "":
result = soc + " · " + core
default:
result = soc
}
return result
}
// skipHostDisk reports whether a /sys/block entry is a virtual device whose
// "model" would only clutter the host card.
func skipHostDisk(name string) bool {
for _, prefix := range []string{"loop", "ram", "zram", "sr", "nbd", "dm-", "md", "mtdblock", "ubi", "ubiblock"} {
if strings.HasPrefix(name, prefix) {
return true
}
}
return false
}
// parseDmidecodeMemory extracts a compact "8 GB DDR4 M471A1K43CB1-CRC" style
// description from `dmidecode -t 17` output, preferring the first populated
// slot. Empty when no installed module can be described.
func parseDmidecodeMemory(output string) string {
var size, memType, partNumber string
flush := func() string {
if size != "" && partNumber != "" {
return strings.TrimSpace(size + " " + memType + " " + partNumber)
}
if size != "" && memType != "" {
return strings.TrimSpace(size + " " + memType)
}
return ""
}
for _, line := range strings.Split(output, "\n") {
trimmed := strings.TrimSpace(line)
if strings.HasPrefix(line, "Memory Device") {
if composed := flush(); composed != "" {
return composed
}
size, memType, partNumber = "", "", ""
continue
}
key, value, found := strings.Cut(trimmed, ":")
if !found {
continue
}
value = strings.TrimSpace(value)
switch strings.TrimSpace(key) {
case "Size":
if !strings.Contains(value, "No Module") && value != "" && value != "Unknown" {
size = value
}
case "Type":
if value != "Unknown" && value != "Other" && !strings.HasPrefix(value, "<OUT OF SPEC") {
memType = value
}
case "Part Number":
if value != "Unknown" && value != "None" && value != "" {
partNumber = value
}
}
}
return flush()
}
-204
View File
@@ -1,204 +0,0 @@
//go:build linux
package server
import (
"context"
"os"
"os/exec"
"path/filepath"
"runtime"
"strings"
"time"
"golang.org/x/sys/unix"
)
// probeHostStatic gathers the hardware identities shown on the dashboard host
// card. Every probe is best-effort: empty fields render as "—" in the SPA.
func probeHostStatic() hostStaticInfo {
return hostStaticInfo{
CPUModel: readHostCPUModel(),
BoardModel: readHostBoardModel(),
MemoryModel: readHostMemoryModel(),
DiskModel: readHostDiskModel(),
}
}
// readHostCPUModel prefers the x86-style "model name"; on ARM hosts it composes
// the device-tree SoC with the core count and Cortex part name.
func readHostCPUModel() string {
cpuinfo, err := os.ReadFile("/proc/cpuinfo")
if err == nil {
if model := parseCPUInfoModel(string(cpuinfo)); model != "" {
return model
}
part, processors := parseCPUInfoPart(string(cpuinfo))
if processors == 0 {
processors = runtime.NumCPU()
}
soc := ""
if compatible, err := os.ReadFile("/proc/device-tree/compatible"); err == nil {
soc = parseCompatibleSoC(string(compatible))
}
if model := composeARMCPUModel(soc, part, processors); model != "" {
return model
}
}
return runtime.GOARCH
}
// readHostBoardModel reads the device-tree model on ARM boards and the DMI
// board name on x86 machines.
func readHostBoardModel() string {
if model, err := os.ReadFile("/proc/device-tree/model"); err == nil {
if text := strings.TrimSpace(strings.TrimRight(string(model), "\x00")); text != "" {
return text
}
}
dmiDir := "/sys/devices/virtual/dmi/id"
board := readSysfsTrimmed(filepath.Join(dmiDir, "board_name"))
vendor := readSysfsTrimmed(filepath.Join(dmiDir, "board_vendor"))
if board != "" && !isPlaceholderDMI(board) {
if vendor != "" && !isPlaceholderDMI(vendor) && !strings.Contains(strings.ToLower(board), strings.ToLower(vendor)) {
return vendor + " " + board
}
return board
}
if product := readSysfsTrimmed(filepath.Join(dmiDir, "product_name")); product != "" && !isPlaceholderDMI(product) {
return product
}
return ""
}
// isPlaceholderDMI filters the well-known "we never filled this in" DMI
// strings so they do not surface as board models.
func isPlaceholderDMI(value string) bool {
switch strings.ToLower(strings.TrimSpace(value)) {
case "", "default string", "to be filled by o.e.m.", "to be filled by o.e.m", "none", "unknown", "n/a", "not specified", "system manufacturer":
return true
}
return false
}
// readHostMemoryModel reports the installed DIMM description when dmidecode is
// available (typical on x86 NAS/PC hosts) and falls back to total capacity,
// which is all an ARM board exposes.
func readHostMemoryModel() string {
if path, err := exec.LookPath("dmidecode"); err == nil {
ctx, cancel := context.WithTimeout(context.Background(), 3*time.Second)
defer cancel()
if output, err := exec.CommandContext(ctx, path, "-t", "17").Output(); err == nil {
if model := parseDmidecodeMemory(string(output)); model != "" {
return model
}
}
}
if total, _, ok := readHostMemoryBytes(); ok {
return formatLiveBytes(float64(total))
}
return ""
}
// readHostDiskModel describes physical block devices, skipping virtual ones
// (loop, zram, device-mapper, mtd, optical). Multiple disks join with "; ".
func readHostDiskModel() string {
entries, err := os.ReadDir("/sys/block")
if err != nil {
return ""
}
var disks []string
for _, entry := range entries {
name := entry.Name()
if skipHostDisk(name) {
continue
}
base := filepath.Join("/sys/block", name)
sizeText := readSysfsTrimmed(filepath.Join(base, "size"))
sectors, ok := parseUint(sizeText)
if !ok || sectors == 0 {
// An empty card reader reports size 0 and tells us nothing.
continue
}
model := readSysfsTrimmed(filepath.Join(base, "device", "model"))
if model == "" {
// MMC/SD cards carry the product name instead of a model string.
model = readSysfsTrimmed(filepath.Join(base, "device", "name"))
}
if model == "" {
model = name
}
capacity := formatLiveBytes(float64(sectors) * 512)
disks = append(disks, model+" · "+capacity)
}
return strings.Join(disks, "; ")
}
func readSysfsTrimmed(path string) string {
raw, err := os.ReadFile(path)
if err != nil {
return ""
}
return strings.TrimSpace(strings.TrimRight(string(raw), "\x00"))
}
// readHostCPUTimes reads the aggregate counters from /proc/stat.
func readHostCPUTimes() (hostCPUTimes, bool) {
raw, err := os.ReadFile("/proc/stat")
if err != nil {
return hostCPUTimes{}, false
}
for _, line := range strings.Split(string(raw), "\n") {
if strings.HasPrefix(line, "cpu ") {
return parseCPUTimes(line)
}
}
return hostCPUTimes{}, false
}
// readHostMemoryBytes returns MemTotal and MemAvailable in bytes.
func readHostMemoryBytes() (total, available uint64, ok bool) {
raw, err := os.ReadFile("/proc/meminfo")
if err != nil {
return 0, 0, false
}
return parseMeminfo(string(raw))
}
// readHostMemory reports used/total bytes and the used percentage.
func readHostMemory() (percent float64, used, total uint64) {
total, available, ok := readHostMemoryBytes()
if !ok || total == 0 {
return 0, 0, 0
}
used = total - available
return clampPercent(float64(used) * 100 / float64(total)), used, total
}
// readHostDisk reports root filesystem usage the way df does: usable space is
// total minus reserved blocks, and the percentage is used/(used+available).
func readHostDisk() (percent float64, used, total uint64) {
var stat unix.Statfs_t
if err := unix.Statfs("/", &stat); err != nil || stat.Blocks == 0 {
return 0, 0, 0
}
blockSize := uint64(stat.Bsize)
total = stat.Blocks * blockSize
free := stat.Bfree * blockSize
available := stat.Bavail * blockSize
used = total - free
if denominator := used + available; denominator > 0 {
percent = clampPercent(float64(used) * 100 / float64(denominator))
}
return percent, used, total
}
// readHostNetTotals sums rx/tx counters across physical host interfaces.
func readHostNetTotals() (rx, tx uint64, ok bool) {
raw, err := os.ReadFile("/proc/net/dev")
if err != nil {
return 0, 0, false
}
rx, tx = parseNetDevCounters(string(raw))
return rx, tx, true
}
-16
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@@ -1,16 +0,0 @@
//go:build !linux
package server
// Host statistics are only meaningful on the Linux deployment target; on other
// platforms every probe reports empty/zero and the dashboard renders "—".
func probeHostStatic() hostStaticInfo { return hostStaticInfo{} }
func readHostCPUTimes() (hostCPUTimes, bool) { return hostCPUTimes{}, false }
func readHostNetTotals() (uint64, uint64, bool) { return 0, 0, false }
func readHostMemory() (float64, uint64, uint64) { return 0, 0, 0 }
func readHostDisk() (float64, uint64, uint64) { return 0, 0, 0 }
-184
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@@ -1,184 +0,0 @@
package server
import (
"testing"
)
func TestParseCPUTimes(t *testing.T) {
times, ok := parseCPUTimes("cpu 38073 0 24013 6762971 3121 0 3019 0 0 0")
if !ok {
t.Fatal("parseCPUTimes rejected a valid cpu line")
}
wantTotal := uint64(38073 + 0 + 24013 + 6762971 + 3121 + 0 + 3019 + 0)
if times.total != wantTotal {
t.Fatalf("total = %d, want %d", times.total, wantTotal)
}
if wantIdle := uint64(6762971 + 3121); times.idle != wantIdle {
t.Fatalf("idle = %d, want %d", times.idle, wantIdle)
}
if _, ok := parseCPUTimes("cpu0 1 2 3 4 5 6 7 8"); ok {
t.Fatal("per-core line must not parse as the aggregate line")
}
if _, ok := parseCPUTimes("cpu 1 2 3"); ok {
t.Fatal("truncated cpu line must not parse")
}
}
func TestCPUDelta(t *testing.T) {
prev := hostCPUTimes{idle: 100, total: 200}
next := hostCPUTimes{idle: 150, total: 300}
busy, total := cpuDelta(prev, next)
if busy != 50 || total != 100 {
t.Fatalf("cpuDelta = (%d, %d), want (50, 100)", busy, total)
}
if busy, total := cpuDelta(next, prev); busy != 0 || total != 0 {
t.Fatalf("backwards counters must report zero, got (%d, %d)", busy, total)
}
}
func TestParseMeminfo(t *testing.T) {
content := "MemTotal: 2040424 kB\nMemFree: 920864 kB\nMemAvailable: 1543480 kB\nBuffers: 315908 kB\n"
total, available, ok := parseMeminfo(content)
if !ok {
t.Fatal("parseMeminfo rejected valid content")
}
if total != 2040424*1024 {
t.Fatalf("total = %d, want %d", total, 2040424*1024)
}
if available != 1543480*1024 {
t.Fatalf("available = %d, want %d", available, 1543480*1024)
}
}
func TestParseNetDevCounters(t *testing.T) {
content := `Inter-| Receive | Transmit
face |bytes packets errs drop fifo frame compressed multicast|bytes packets errs drop fifo colls carrier compressed
lo: 10 1 0 0 0 0 0 0 20 2 0 0 0 0 0 0
eth0: 100 1 0 0 0 0 0 0 200 2 0 0 0 0 0 0
br-lan: 1000 1 0 0 0 0 0 0 2000 2 0 0 0 0 0 0
utun: 300 1 0 0 0 0 0 0 400 2 0 0 0 0 0 0
vocat50a684ceb0: 500 1 0 0 0 0 0 0 600 2 0 0 0 0 0 0
wwan0: 700 1 0 0 0 0 0 0 800 2 0 0 0 0 0 0
`
rx, tx := parseNetDevCounters(content)
// Only eth0 and wwan0 count; lo, br-lan, utun and vocat are virtual.
if rx != 800 || tx != 1000 {
t.Fatalf("rx,tx = %d,%d, want 800,1000", rx, tx)
}
}
func TestHostNetInterfaceCounted(t *testing.T) {
counted := []string{"eth0", "eth1", "wwan0", "usb0", "wlan0", "enp3s0", "pppoe-wan"}
for _, name := range counted {
if !hostNetInterfaceCounted(name) {
t.Fatalf("%s should be counted", name)
}
}
skipped := []string{"lo", "br-lan", "docker0", "veth123", "ip6tnl0", "sit0", "utun", "vocat50a684ceb0", "wg0", "tun0", "tailscale0", ""}
for _, name := range skipped {
if hostNetInterfaceCounted(name) {
t.Fatalf("%s should be skipped", name)
}
}
}
func TestParseCPUInfoModelX86(t *testing.T) {
content := "processor\t: 0\nvendor_id\t: GenuineIntel\nmodel name\t: Intel(R) Core(TM) i5-6200U CPU @ 2.30GHz\n"
if model := parseCPUInfoModel(content); model != "Intel(R) Core(TM) i5-6200U CPU @ 2.30GHz" {
t.Fatalf("model = %q", model)
}
}
func TestParseCPUInfoARM(t *testing.T) {
content := "processor\t: 0\nBogoMIPS\t: 48.00\nCPU implementer\t: 0x41\nCPU part\t: 0xd03\nprocessor\t: 1\nCPU part\t: 0xd03\n"
if model := parseCPUInfoModel(content); model != "" {
t.Fatalf("ARM cpuinfo must not report an x86 model name, got %q", model)
}
part, processors := parseCPUInfoPart(content)
if part != "0xd03" || processors != 2 {
t.Fatalf("part,processors = %q,%d, want 0xd03,2", part, processors)
}
}
func TestParseCompatibleSoC(t *testing.T) {
raw := "xunlong,orangepi-zero3\x00allwinner,sun50i-h618\x00"
if soc := parseCompatibleSoC(raw); soc != "Allwinner sun50i-h618" {
t.Fatalf("soc = %q", soc)
}
if soc := parseCompatibleSoC(""); soc != "" {
t.Fatalf("empty compatible must yield empty soc, got %q", soc)
}
}
func TestComposeARMCPUModel(t *testing.T) {
model := composeARMCPUModel("Allwinner sun50i-h618", "0xd03", 4)
if model != "Allwinner sun50i-h618 · 4× Cortex-A53" {
t.Fatalf("model = %q", model)
}
if model := composeARMCPUModel("", "", 0); model != "" {
t.Fatalf("empty inputs must yield empty model, got %q", model)
}
}
func TestParseDmidecodeMemory(t *testing.T) {
output := `# dmidecode 3.3
Getting SMBIOS data from sysfs.
SMBIOS 3.0 present.
Handle 0x0010, DMI type 17, 40 bytes
Memory Device
Array Handle: 0x000F
Error Information Handle: Not Provided
Total Width: 64 bits
Data Width: 64 bits
Size: 8 GB
Form Factor: SODIMM
Type: DDR4
Speed: 2400 MT/s
Manufacturer: Samsung
Serial Number: 12345678
Part Number: M471A1K43CB1-CRC
Rank: 1
Handle 0x0011, DMI type 17, 40 bytes
Memory Device
Size: No Module Installed
Type: Unknown
`
if model := parseDmidecodeMemory(output); model != "8 GB DDR4 M471A1K43CB1-CRC" {
t.Fatalf("model = %q", model)
}
if model := parseDmidecodeMemory("Memory Device\n\tSize: No Module Installed\n"); model != "" {
t.Fatalf("unpopulated slots must yield empty model, got %q", model)
}
}
func TestClampPercent(t *testing.T) {
if clampPercent(-1) != 0 || clampPercent(101) != 100 || clampPercent(50) != 50 {
t.Fatal("clampPercent bounds violated")
}
}
func TestParseUintTrims(t *testing.T) {
if value, ok := parseUint(" 61440000 "); !ok || value != 61440000 {
t.Fatalf("parseUint = %d,%v", value, ok)
}
if _, ok := parseUint("not-a-number"); ok {
t.Fatal("parseUint accepted garbage")
}
}
func TestSkipHostDiskPrefixes(t *testing.T) {
skipped := []string{"loop0", "ram0", "zram0", "sr0", "nbd0", "dm-0", "md0", "mtdblock0", "ubiblock0_0"}
for _, name := range skipped {
if !skipHostDisk(name) {
t.Fatalf("%s should be skipped", name)
}
}
kept := []string{"sda", "nvme0n1", "mmcblk0", "vda", "sdb"}
for _, name := range kept {
if skipHostDisk(name) {
t.Fatalf("%s should be kept", name)
}
}
}
-282
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@@ -1,282 +0,0 @@
package server
import (
"bytes"
"context"
"crypto/hmac"
"crypto/sha256"
"encoding/base64"
"encoding/json"
"errors"
"fmt"
"io"
"net/http"
"net/url"
"regexp"
"strconv"
"strings"
"time"
)
const maxLarkPayloadBytes = 20 << 10
var larkTemplateVariableNames = []string{
"event",
"title",
"message",
"timestamp",
"content",
"number",
"device_id",
"device_name",
"device_label",
"time",
}
var larkTemplatePlaceholderPattern = regexp.MustCompile(`\{\{[^{}]*\}\}`)
var larkWebhookHosts = map[string]struct{}{
"open.feishu.cn": {},
"open.larksuite.com": {},
}
type larkTemplateValues map[string]string
func renderLarkPayload(template string, values larkTemplateValues) ([]byte, error) {
encodedValues := make(map[string]string, len(larkTemplateVariableNames))
for _, name := range larkTemplateVariableNames {
encoded, err := json.Marshal(values[name])
if err != nil {
return nil, fmt.Errorf("encode Lark template value %q: %w", name, err)
}
encodedValues[name] = string(encoded)
}
unsupported := false
rendered := larkTemplatePlaceholderPattern.ReplaceAllStringFunc(template, func(placeholder string) string {
name := placeholder[2 : len(placeholder)-2]
encoded, ok := encodedValues[name]
if !ok {
unsupported = true
return placeholder
}
return encoded
})
remainder := larkTemplatePlaceholderPattern.ReplaceAllString(template, "")
if unsupported || strings.Contains(remainder, "{{") {
return nil, errors.New("lark.payload_template contains an unsupported variable")
}
var payload map[string]json.RawMessage
if err := json.Unmarshal([]byte(rendered), &payload); err != nil || len(payload) == 0 {
return nil, errors.New("lark.payload_template must render to a non-empty JSON object")
}
if len(rendered) > maxLarkPayloadBytes {
return nil, errors.New("lark.payload_template renders beyond the 20 KB Lark limit")
}
return []byte(rendered), nil
}
func larkSignature(timestamp int64, secret string) string {
key := strconv.FormatInt(timestamp, 10) + "\n" + secret
signature := hmac.New(sha256.New, []byte(key))
return base64.StdEncoding.EncodeToString(signature.Sum(nil))
}
func signLarkPayload(payload []byte, secret string, now time.Time) ([]byte, error) {
if secret == "" {
return payload, nil
}
var document map[string]json.RawMessage
if err := json.Unmarshal(payload, &document); err != nil || len(document) == 0 {
return nil, errors.New("lark payload must be a non-empty JSON object")
}
timestamp := now.Unix()
document["timestamp"], _ = json.Marshal(strconv.FormatInt(timestamp, 10))
document["sign"], _ = json.Marshal(larkSignature(timestamp, secret))
signed, err := json.Marshal(document)
if err != nil {
return nil, fmt.Errorf("encode signed Lark payload: %w", err)
}
if len(signed) > maxLarkPayloadBytes {
return nil, errors.New("lark payload exceeds the 20 KB Lark limit after signing")
}
return signed, nil
}
func validateLarkResponse(status int, body []byte) error {
var result struct {
Code *int `json:"code"`
StatusCode *int `json:"StatusCode"`
}
if status < http.StatusOK || status >= http.StatusMultipleChoices || json.Unmarshal(body, &result) != nil {
return fmt.Errorf("%w: Lark response was not successful", errProviderRejected)
}
if result.Code != nil {
if *result.Code == 0 {
return nil
}
return fmt.Errorf("%w: Lark response was not successful", errProviderRejected)
}
if result.StatusCode == nil || *result.StatusCode != 0 {
return fmt.Errorf("%w: Lark response was not successful", errProviderRejected)
}
return nil
}
func parseLarkWebhookURL(raw string) (*url.URL, error) {
parsed, err := parseOutboundURL(raw, true)
if err != nil {
return nil, err
}
if _, ok := larkWebhookHosts[strings.ToLower(parsed.Hostname())]; !ok {
return nil, errors.New("Lark group bot webhook must use open.feishu.cn or open.larksuite.com")
}
if parsed.Port() != "" && parsed.Port() != "443" {
return nil, errors.New("Lark group bot webhook must use the default HTTPS port")
}
const prefix = "/open-apis/bot/v2/hook/"
token := strings.TrimPrefix(parsed.Path, prefix)
if token == parsed.Path || token == "" || strings.Contains(token, "/") || parsed.RawPath != "" ||
parsed.RawQuery != "" || parsed.ForceQuery || parsed.Fragment != "" {
return nil, errors.New("Lark group bot webhook path is invalid")
}
return parsed, nil
}
func validateLarkWebhookURL(ctx context.Context, raw string) (*url.URL, error) {
parsed, err := parseLarkWebhookURL(raw)
if err != nil {
return nil, err
}
if _, err := resolvePublicAddresses(ctx, parsed.Hostname()); err != nil {
return nil, err
}
return parsed, nil
}
func larkTestValues(now time.Time) larkTemplateValues {
return larkTemplateValues{
"event": "test", "title": "vocat", "message": "vocat notification test",
"timestamp": now.UTC().Format(time.RFC3339),
}
}
func larkSMSValues(message smsNotification) larkTemplateValues {
return larkTemplateValues{
"event": "sms.received",
"title": "收到新短信",
"message": message.Text(),
"timestamp": message.Time.UTC().Format(time.RFC3339),
"content": message.Content,
"number": message.Number,
"device_id": message.DeviceID,
"device_name": message.DeviceName,
"device_label": message.DeviceLabel,
"time": message.Time.Local().Format("2006-01-02 15:04:05"),
}
}
func larkAutomaticTaskValues(message automaticTaskNotification) larkTemplateValues {
return larkTemplateValues{
"event": "automatic_task.completed",
"title": message.Title,
"message": message.Text,
"timestamp": message.Time.UTC().Format(time.RFC3339),
"content": "",
"number": "",
"device_id": "",
"device_name": "",
"device_label": "",
"time": "",
}
}
func validateLarkNotificationConfig(config map[string]any) error {
if configString(config, "url") == "" {
return errors.New("lark.url is required")
}
template := configString(config, "payload_template")
if template == "" {
return errors.New("lark.payload_template is required")
}
if signingEnabled, _ := config["signing_enabled"].(bool); signingEnabled {
secret := configString(config, "secret")
if secret == "" {
return errors.New("lark.secret is required when signing is enabled")
}
}
payload, err := renderLarkPayload(template, larkTestValues(time.Unix(0, 0)))
if err != nil {
return err
}
_, err = signLarkPayload(payload, larkSigningSecret(config), time.Unix(0, 0))
return err
}
func larkSigningSecret(config map[string]any) string {
enabled, _ := config["signing_enabled"].(bool)
if !enabled {
return ""
}
return configString(config, "secret")
}
func sendLarkNotification(ctx context.Context, config map[string]any, values larkTemplateValues) error {
if err := validateLarkNotificationConfig(config); err != nil {
return err
}
payload, err := renderLarkPayload(configString(config, "payload_template"), values)
if err != nil {
return err
}
payload, err = signLarkPayload(payload, larkSigningSecret(config), time.Now())
if err != nil {
return err
}
parsed, err := validateLarkWebhookURL(ctx, configString(config, "url"))
if err != nil {
return err
}
client, err := restrictedHTTPClient(ctx, 8*time.Second, "")
if err != nil {
return err
}
return postLarkNotification(ctx, client, parsed.String(), payload)
}
func postLarkNotification(ctx context.Context, client *http.Client, endpoint string, payload []byte) error {
request, err := http.NewRequestWithContext(ctx, http.MethodPost, endpoint, bytes.NewReader(payload))
if err != nil {
return fmt.Errorf("create Lark notification request: %w", err)
}
request.Header.Set("Content-Type", "application/json; charset=utf-8")
request.Header.Set("User-Agent", "vocat-lark-notification/1")
response, err := client.Do(request)
if err != nil {
return fmt.Errorf("send Lark notification: %w", sanitizeLarkRequestError(err))
}
body, readErr := io.ReadAll(io.LimitReader(response.Body, 64<<10))
closeErr := response.Body.Close()
if readErr != nil {
return fmt.Errorf("read Lark response: %w", readErr)
}
if closeErr != nil {
return fmt.Errorf("close Lark response: %w", closeErr)
}
if err := validateLarkResponse(response.StatusCode, body); err != nil {
return err
}
return nil
}
func sanitizeLarkRequestError(err error) error {
var requestErr *url.Error
if errors.As(err, &requestErr) && requestErr.Err != nil {
return requestErr.Err
}
return err
}
func sendLarkNotificationTest(ctx context.Context, config map[string]any) error {
return sendLarkNotification(ctx, config, larkTestValues(time.Now()))
}
-204
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@@ -1,204 +0,0 @@
package server
import (
"context"
"encoding/json"
"errors"
"io"
"net/http"
"net/http/httptest"
"net/url"
"strings"
"testing"
"time"
)
func TestRenderLarkPayloadEscapesTemplateValues(t *testing.T) {
payload, err := renderLarkPayload(
`{"msg_type":"text","content":{"text":{{message}},"number":{{number}}}}`,
larkTemplateValues{
"message": "quote: \"\nline",
"number": "+447386",
},
)
if err != nil {
t.Fatal(err)
}
if got, want := string(payload), `{"msg_type":"text","content":{"text":"quote: \"\nline","number":"+447386"}}`; got != want {
t.Fatalf("payload = %s, want %s", got, want)
}
}
func TestRenderLarkPayloadDoesNotInterpretPlaceholdersInsideValues(t *testing.T) {
payload, err := renderLarkPayload(
`{"msg_type":"text","content":{"text":{{message}}}}`,
larkTemplateValues{"message": "keep {{timestamp}} literally", "timestamp": "changed"},
)
if err != nil {
t.Fatal(err)
}
if got, want := string(payload), `{"msg_type":"text","content":{"text":"keep {{timestamp}} literally"}}`; got != want {
t.Fatalf("payload = %s, want %s", got, want)
}
}
func TestRenderLarkPayloadRejectsInvalidTemplate(t *testing.T) {
for _, template := range []string{
`{"text":{{unknown}}}`,
`[]`,
`{"msg_type":"text"`,
`{"text":"` + strings.Repeat("x", maxLarkPayloadBytes) + `"}`,
} {
t.Run(template[:min(len(template), 40)], func(t *testing.T) {
if _, err := renderLarkPayload(template, larkTemplateValues{}); err == nil {
t.Fatalf("template was accepted")
}
})
}
}
func TestSignLarkPayload(t *testing.T) {
const timestamp = int64(1_599_360_473)
if got, want := larkSignature(timestamp, "demo"), "l1N0gAcBjdwBvGm1xMjOF0XSyaLRpR7tuO5dHfhAYc8="; got != want {
t.Fatalf("signature = %q, want %q", got, want)
}
unsigned := []byte(`{"msg_type":"text","content":{"text":"hello"}}`)
signed, err := signLarkPayload(unsigned, "demo", time.Unix(timestamp, 0))
if err != nil {
t.Fatal(err)
}
var payload map[string]any
if err := json.Unmarshal(signed, &payload); err != nil {
t.Fatal(err)
}
if payload["timestamp"] != "1599360473" || payload["sign"] != "l1N0gAcBjdwBvGm1xMjOF0XSyaLRpR7tuO5dHfhAYc8=" {
t.Fatalf("signed payload = %#v", payload)
}
untouched, err := signLarkPayload(unsigned, "", time.Unix(timestamp, 0))
if err != nil || string(untouched) != string(unsigned) {
t.Fatalf("unsigned payload = %s, err = %v", untouched, err)
}
}
func TestValidateLarkResponse(t *testing.T) {
for _, body := range []string{
`{"code":0,"msg":"success"}`,
`{"StatusCode":0,"StatusMessage":"success"}`,
} {
if err := validateLarkResponse(http.StatusOK, []byte(body)); err != nil {
t.Fatalf("successful response %s = %v", body, err)
}
}
for _, response := range []struct {
status int
body string
}{
{http.StatusBadGateway, `{"code":0}`},
{http.StatusOK, `{"code":19021,"msg":"sign match fail or timestamp is not within one hour from current time","StatusCode":0}`},
{http.StatusOK, `{"StatusCode":19021,"StatusMessage":"sign error"}`},
{http.StatusOK, `{}`},
{http.StatusOK, `not-json`},
} {
if err := validateLarkResponse(response.status, []byte(response.body)); !errors.Is(err, errProviderRejected) {
t.Fatalf("validateLarkResponse(%d, %s) = %v", response.status, response.body, err)
}
}
}
func TestPostLarkNotificationSendsJSONPayload(t *testing.T) {
payload := []byte(`{"msg_type":"text","content":{"text":"hello"}}`)
provider := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if r.Method != http.MethodPost {
t.Errorf("method = %q, want POST", r.Method)
}
if got := r.Header.Get("Content-Type"); got != "application/json; charset=utf-8" {
t.Errorf("Content-Type = %q", got)
}
if got := r.Header.Get("User-Agent"); got != "vocat-lark-notification/1" {
t.Errorf("User-Agent = %q", got)
}
body, err := io.ReadAll(r.Body)
if err != nil {
t.Errorf("read body: %v", err)
}
if string(body) != string(payload) {
t.Errorf("body = %s, want %s", body, payload)
}
w.Header().Set("Content-Type", "application/json")
_, _ = io.WriteString(w, `{"code":0,"msg":"success"}`)
}))
t.Cleanup(provider.Close)
if err := postLarkNotification(context.Background(), provider.Client(), provider.URL, payload); err != nil {
t.Fatalf("postLarkNotification() = %v", err)
}
}
func TestParseLarkWebhookURL(t *testing.T) {
for _, raw := range []string{
"https://open.feishu.cn/open-apis/bot/v2/hook/feishu-token",
"https://open.larksuite.com/open-apis/bot/v2/hook/lark-token",
"https://open.larksuite.com:443/open-apis/bot/v2/hook/lark-token",
} {
if _, err := parseLarkWebhookURL(raw); err != nil {
t.Errorf("parseLarkWebhookURL(%q) = %v", raw, err)
}
}
for _, raw := range []string{
"http://open.larksuite.com/open-apis/bot/v2/hook/token",
"https://example.com/open-apis/bot/v2/hook/token",
"https://open.larksuite.com/open-apis/bot/hook/token",
"https://open.larksuite.com/open-apis/bot/v2/hook/",
"https://open.larksuite.com/open-apis/bot/v2/hook/token/extra",
"https://open.larksuite.com/open-apis/bot/v2/hook/token?query=1",
} {
if _, err := parseLarkWebhookURL(raw); err == nil {
t.Errorf("parseLarkWebhookURL(%q) accepted an invalid group bot webhook", raw)
}
}
}
func TestValidateLarkNotificationConfig(t *testing.T) {
valid := map[string]any{
"url": "https://open.larksuite.com/open-apis/bot/v2/hook/token",
"signing_enabled": true,
"secret": "demo",
"payload_template": `{"msg_type":"text","content":{"text":{{message}}}}`,
}
if err := validateLarkNotificationConfig(valid); err != nil {
t.Fatalf("valid config = %v", err)
}
unsigned := map[string]any{
"url": valid["url"],
"signing_enabled": false,
"payload_template": valid["payload_template"],
}
if err := validateLarkNotificationConfig(unsigned); err != nil {
t.Fatalf("unsigned config = %v", err)
}
if secret := larkSigningSecret(map[string]any{"signing_enabled": false, "secret": "demo"}); secret != "" {
t.Fatalf("disabled signing secret = %q", secret)
}
if secret := larkSigningSecret(valid); secret != "demo" {
t.Fatalf("enabled signing secret = %q", secret)
}
for _, config := range []map[string]any{
{"payload_template": valid["payload_template"]},
{"url": valid["url"]},
{"url": valid["url"], "signing_enabled": true, "payload_template": valid["payload_template"]},
} {
if err := validateLarkNotificationConfig(config); err == nil {
t.Fatalf("invalid config was accepted: %#v", config)
}
}
}
func TestSanitizeLarkRequestErrorRemovesWebhookURL(t *testing.T) {
const webhookURL = "https://open.feishu.cn/open-apis/bot/v2/hook/sensitive-token"
err := sanitizeLarkRequestError(&url.Error{Op: "Post", URL: webhookURL, Err: errors.New("dial failed")})
if strings.Contains(err.Error(), "sensitive-token") || err.Error() != "dial failed" {
t.Fatalf("sanitized error = %q", err)
}
}
+8 -75
View File
@@ -5,11 +5,9 @@ import (
"encoding/json" "encoding/json"
"errors" "errors"
"net/http" "net/http"
"sort"
"strings" "strings"
"time" "time"
"vocat/internal/device"
"vocat/internal/i18n" "vocat/internal/i18n"
localproxy "vocat/internal/proxy" localproxy "vocat/internal/proxy"
"vocat/internal/store" "vocat/internal/store"
@@ -102,48 +100,6 @@ func (s *Server) handleUpstreamProxy(w http.ResponseWriter, r *http.Request, id
} }
payload.ID = id payload.ID = id
s.saveAndProbeUpstream(w, r, payload) s.saveAndProbeUpstream(w, r, payload)
case http.MethodPatch:
var request struct {
Enabled bool `json:"enabled"`
}
if err := s.decodeJSON(w, r, &request); err != nil {
writeError(w, http.StatusBadRequest, "invalid_request", err.Error())
return
}
value, err := s.store.UpstreamProxy(r.Context(), id)
if err != nil {
s.writeStoreError(w, err)
return
}
value.Enabled = request.Enabled
value.UpdatedAt = time.Now().UTC()
if err := s.store.UpsertUpstreamProxy(r.Context(), value); err != nil {
s.writeStoreError(w, err)
return
}
bindings, err := s.store.ListDeviceProxyBindings(r.Context())
if err != nil {
s.writeStoreError(w, err)
return
}
reconnectRequested := false
var reconnectErrors []string
for _, binding := range bindings {
if binding.UpstreamProxyID != id {
continue
}
requested, reconnectErr := s.requestProfileProxyRouteReconnect(binding.DeviceID, binding.ICCID)
reconnectRequested = reconnectRequested || requested
if reconnectErr != nil {
reconnectErrors = append(reconnectErrors, reconnectErr.Error())
}
}
response := upstreamProxyResponse(value.Redacted())
response["reconnect_requested"] = reconnectRequested
if len(reconnectErrors) > 0 {
response["reconnect_error"] = strings.Join(reconnectErrors, "; ")
}
writeJSON(w, http.StatusOK, map[string]any{"data": response})
case http.MethodDelete: case http.MethodDelete:
bindings, listErr := s.store.ListDeviceProxyBindings(r.Context()) bindings, listErr := s.store.ListDeviceProxyBindings(r.Context())
if listErr != nil { if listErr != nil {
@@ -161,7 +117,7 @@ func (s *Server) handleUpstreamProxy(w http.ResponseWriter, r *http.Request, id
} }
writeJSON(w, http.StatusOK, map[string]any{"data": map[string]any{"deleted": true}}) writeJSON(w, http.StatusOK, map[string]any{"data": map[string]any{"deleted": true}})
default: default:
w.Header().Set("Allow", "PUT, PATCH, DELETE") w.Header().Set("Allow", "PUT, DELETE")
writeError(w, http.StatusMethodNotAllowed, "method_not_allowed", "method not allowed") writeError(w, http.StatusMethodNotAllowed, "method_not_allowed", "method not allowed")
} }
} }
@@ -395,8 +351,8 @@ func (s *Server) saveAndProbeUpstream(
) )
probeResponse := probeMap(probe, probeErr) probeResponse := probeMap(probe, probeErr)
message := i18n.T("代理已保存;UDP ASSOCIATE 尚未通过。") message := i18n.T("代理已保存;UDP ASSOCIATE 尚未通过。")
if probeErr == nil && probe.UDPExchangeOK { if probeErr == nil && probe.UDPAssociateOK {
message = i18n.T("代理已保存,SOCKS5 认证与真实 UDP 往返均通过。") message = i18n.T("代理已保存,SOCKS5 认证与 UDP ASSOCIATE 均通过。")
} }
writeJSON(w, http.StatusOK, map[string]any{ writeJSON(w, http.StatusOK, map[string]any{
"data": map[string]any{ "data": map[string]any{
@@ -425,8 +381,8 @@ func (s *Server) handleUpstreamProbe(w http.ResponseWriter, r *http.Request, id
8*time.Second, 8*time.Second,
) )
message := i18n.T("代理不能承载 VoWiFi 所需的 UDP。") message := i18n.T("代理不能承载 VoWiFi 所需的 UDP。")
if probeErr == nil && result.UDPExchangeOK { if probeErr == nil && result.UDPAssociateOK {
message = i18n.T("SOCKS5 认证与真实 UDP 往返探测通过。") message = i18n.T("SOCKS5 认证与 UDP ASSOCIATE 探测通过。")
} }
writeJSON(w, http.StatusOK, map[string]any{ writeJSON(w, http.StatusOK, map[string]any{
"data": map[string]any{ "data": map[string]any{
@@ -479,8 +435,8 @@ func (s *Server) handleUpstreamProbeConfig(w http.ResponseWriter, r *http.Reques
8*time.Second, 8*time.Second,
) )
message := i18n.T("代理不能承载 VoWiFi 所需的 UDP。") message := i18n.T("代理不能承载 VoWiFi 所需的 UDP。")
if probeErr == nil && result.UDPExchangeOK { if probeErr == nil && result.UDPAssociateOK {
message = i18n.T("SOCKS5 认证与真实 UDP 往返探测通过。") message = i18n.T("SOCKS5 认证与 UDP ASSOCIATE 探测通过。")
} }
writeJSON(w, http.StatusOK, map[string]any{ writeJSON(w, http.StatusOK, map[string]any{
"data": map[string]any{ "data": map[string]any{
@@ -633,7 +589,7 @@ func countryNameForMCC(mcc string) string {
return "" return ""
} }
var namedProxyCountries = []proxyCountry{ var proxyCountries = []proxyCountry{
{Code: "CN", Name: "中国", MCCs: []string{"460", "461"}}, {Code: "CN", Name: "中国", MCCs: []string{"460", "461"}},
{Code: "HK", Name: "中国香港", MCCs: []string{"454"}}, {Code: "HK", Name: "中国香港", MCCs: []string{"454"}},
{Code: "MO", Name: "中国澳门", MCCs: []string{"455"}}, {Code: "MO", Name: "中国澳门", MCCs: []string{"455"}},
@@ -688,26 +644,3 @@ var namedProxyCountries = []proxyCountry{
{Code: "NG", Name: "尼日利亚", MCCs: []string{"621"}}, {Code: "NG", Name: "尼日利亚", MCCs: []string{"621"}},
{Code: "KE", Name: "肯尼亚", MCCs: []string{"639"}}, {Code: "KE", Name: "肯尼亚", MCCs: []string{"639"}},
} }
var proxyCountries = buildProxyCountries()
func buildProxyCountries() []proxyCountry {
byCode := make(map[string]proxyCountry)
for _, country := range namedProxyCountries {
byCode[country.Code] = country
}
for code, mccs := range device.MCCsByCountry() {
country, found := byCode[code]
if !found {
country = proxyCountry{Code: code, Name: code}
}
country.MCCs = append([]string(nil), mccs...)
byCode[code] = country
}
result := make([]proxyCountry, 0, len(byCode))
for _, country := range byCode {
result = append(result, country)
}
sort.Slice(result, func(i, j int) bool { return result[i].Code < result[j].Code })
return result
}
-10
View File
@@ -82,7 +82,6 @@ type Server struct {
updateApplying bool updateApplying bool
https *httpsmode.Manager https *httpsmode.Manager
netTraffic *liveNetTracker netTraffic *liveNetTracker
hostStats *hostStatsSampler
publicIPMu sync.RWMutex publicIPMu sync.RWMutex
publicIPs map[string]cachedPublicIP publicIPs map[string]cachedPublicIP
automaticTasks *automaticTaskScheduler automaticTasks *automaticTaskScheduler
@@ -134,7 +133,6 @@ func New(options Options) (*Server, error) {
updateToken: strings.TrimSpace(options.UpdateToken), updateToken: strings.TrimSpace(options.UpdateToken),
https: options.HTTPS, https: options.HTTPS,
netTraffic: newLiveNetTracker(), netTraffic: newLiveNetTracker(),
hostStats: newHostStatsSampler(),
publicIPs: make(map[string]cachedPublicIP), publicIPs: make(map[string]cachedPublicIP),
updateCheck: update.CheckLatest, updateCheck: update.CheckLatest,
updateApply: update.ApplyLatest, updateApply: update.ApplyLatest,
@@ -144,9 +142,6 @@ func New(options Options) (*Server, error) {
server.loadUILanguage(context.Background()) server.loadUILanguage(context.Background())
mux := http.NewServeMux() mux := http.NewServeMux()
mux.HandleFunc("/healthz", server.handleLiveness)
mux.HandleFunc("/readyz", server.handleReadiness)
mux.HandleFunc("/metrics", server.handleMetrics)
mux.HandleFunc("/api/health", server.handleHealth) mux.HandleFunc("/api/health", server.handleHealth)
mux.HandleFunc("/api/auth/login", server.handleLogin) mux.HandleFunc("/api/auth/login", server.handleLogin)
mux.HandleFunc("/api/auth/session", server.handleSession) mux.HandleFunc("/api/auth/session", server.handleSession)
@@ -172,11 +167,6 @@ type VoWiFiController interface {
RequestReconnect(string) (vowifi.State, error) RequestReconnect(string) (vowifi.State, error)
} }
type VoWiFiMaintenanceController interface {
BeginMaintenance(string) error
EndMaintenance(string)
}
type VoWiFiCallController interface { type VoWiFiCallController interface {
Calls(string) ([]vowifi.Call, error) Calls(string) ([]vowifi.Call, error)
DialCall(context.Context, string, string) (vowifi.Call, error) DialCall(context.Context, string, string) (vowifi.Call, error)
+50 -127
View File
@@ -29,7 +29,7 @@ import (
) )
var ( var (
errUnsafeDestination = errors.New("notification destination is not allowed") errUnsafeDestination = errors.New("notification destination is not public")
errProviderRejected = errors.New("notification provider rejected the test") errProviderRejected = errors.New("notification provider rejected the test")
telegramTokenPattern = regexp.MustCompile(`^[0-9]{5,20}:[A-Za-z0-9_-]{20,128}$`) telegramTokenPattern = regexp.MustCompile(`^[0-9]{5,20}:[A-Za-z0-9_-]{20,128}$`)
) )
@@ -41,7 +41,6 @@ var notificationChannels = []string{
"bark", "bark",
"pushplus", "pushplus",
"wecom", "wecom",
"lark",
} }
var notificationFields = map[string]map[string]string{ var notificationFields = map[string]map[string]string{
@@ -66,9 +65,6 @@ var notificationFields = map[string]map[string]string{
"wecom": { "wecom": {
"urls": "strings", "payload_template": "string", "urls": "strings", "payload_template": "string",
}, },
"lark": {
"url": "string", "signing_enabled": "boolean", "secret": "string", "payload_template": "string",
},
} }
// routeSettingsAPI is intentionally independent of the main router so it can // routeSettingsAPI is intentionally independent of the main router so it can
@@ -244,20 +240,6 @@ func decodeNotificationConfig(
if err != nil { if err != nil {
return false, nil, fmt.Errorf("encode %s notification config: %w", channel, err) return false, nil, fmt.Errorf("encode %s notification config: %w", channel, err)
} }
if enabled && channel == "lark" {
var resolved map[string]any
if err := json.Unmarshal(config, &resolved); err != nil {
return false, nil, fmt.Errorf("decode lark notification config: %w", err)
}
signingEnabled, _ := resolved["signing_enabled"].(bool)
if signingEnabled && configString(resolved, "url") != store.SecretMask &&
configString(resolved, "secret") == store.SecretMask {
return false, nil, errors.New("lark.secret must be re-entered when lark.url changes")
}
if err := validateLarkNotificationConfig(resolved); err != nil {
return false, nil, err
}
}
return enabled, config, nil return enabled, config, nil
} }
@@ -283,9 +265,6 @@ func validateNotificationField(
if name == "text_template" { if name == "text_template" {
limit = 32768 limit = 32768
} }
if channel == "lark" && name == "payload_template" {
limit = maxLarkPayloadBytes
}
if len(value) > limit || strings.ContainsAny(value, "\x00") { if len(value) > limit || strings.ContainsAny(value, "\x00") {
return fmt.Errorf("%s is too long or contains invalid characters", field) return fmt.Errorf("%s is too long or contains invalid characters", field)
} }
@@ -321,16 +300,6 @@ func validateNotificationField(
return fmt.Errorf("%s is not a valid JSON template: %w", field, err) return fmt.Errorf("%s is not a valid JSON template: %w", field, err)
} }
} }
if channel == "lark" && name == "payload_template" && value != "" {
if _, err := renderLarkPayload(value, larkTestValues(time.Unix(0, 0))); err != nil {
return fmt.Errorf("%s is not a valid JSON template: %w", field, err)
}
}
if channel == "lark" && name == "url" && value != "" && value != store.SecretMask {
if _, err := parseLarkWebhookURL(value); err != nil {
return fmt.Errorf("%s must be a valid Feishu or Lark group bot webhook URL: %w", field, err)
}
}
case "integer": case "integer":
var value int var value int
if err := json.Unmarshal(raw, &value); err != nil { if err := json.Unmarshal(raw, &value); err != nil {
@@ -418,7 +387,7 @@ func (s *Server) handleNotificationTest(
writeError(w, http.StatusNotFound, "not_found", "notification channel was not found") writeError(w, http.StatusNotFound, "not_found", "notification channel was not found")
return return
} }
if channel != "webhook" && channel != "telegram" && channel != "email" && channel != "bark" && channel != "wecom" && channel != "lark" { if channel != "webhook" && channel != "telegram" && channel != "email" && channel != "bark" && channel != "wecom" {
writeError( writeError(
w, w,
http.StatusNotImplemented, http.StatusNotImplemented,
@@ -472,8 +441,6 @@ func (s *Server) handleNotificationTest(
err = sendBarkNotificationTest(notificationContext, resolved) err = sendBarkNotificationTest(notificationContext, resolved)
case "wecom": case "wecom":
err = sendWecomNotificationTest(notificationContext, resolved) err = sendWecomNotificationTest(notificationContext, resolved)
case "lark":
err = sendLarkNotificationTest(notificationContext, resolved)
} }
if err != nil { if err != nil {
redacted := store.RedactText(err.Error(), provider) redacted := store.RedactText(err.Error(), provider)
@@ -492,7 +459,7 @@ func (s *Server) handleNotificationTest(
w, w,
http.StatusBadRequest, http.StatusBadRequest,
"unsafe_destination", "unsafe_destination",
"notification destination resolved to an unusable or protected system address", "notification destination must resolve only to public network addresses",
) )
case errors.Is(err, errProviderRejected): case errors.Is(err, errProviderRejected):
writeError( writeError(
@@ -579,8 +546,8 @@ func (s *Server) resolveNotificationTestConfig(
// mergeNotificationTestSecretValue preserves masked values submitted by the // mergeNotificationTestSecretValue preserves masked values submitted by the
// settings form while allowing newly entered sensitive values in the same // settings form while allowing newly entered sensitive values in the same
// request. Provider webhook URLs can be sensitive lists, unlike the // request. WeCom URLs are a sensitive list, unlike the string-based secrets
// string-based secrets used by the other notification channels. // used by the other notification channels.
func mergeNotificationTestSecretValue(incoming, existing any) any { func mergeNotificationTestSecretValue(incoming, existing any) any {
if incoming == nil { if incoming == nil {
return existing return existing
@@ -628,8 +595,6 @@ func validateNotificationTestConfig(channel string, config map[string]any) error
} }
case "wecom": case "wecom":
return validateWecomNotificationConfig(config) return validateWecomNotificationConfig(config)
case "lark":
return validateLarkNotificationConfig(config)
case "telegram": case "telegram":
token := configString(config, "bot_token") token := configString(config, "bot_token")
if token == "" || token == store.SecretMask { if token == "" || token == store.SecretMask {
@@ -940,12 +905,11 @@ func restrictedHTTPClient(
}, },
} }
if strings.TrimSpace(proxy) != "" { if strings.TrimSpace(proxy) != "" {
parsed, err := validateNotificationProxyURL(ctx, proxy) parsed, err := validateOutboundURL(ctx, proxy, false)
if err != nil { if err != nil {
return nil, fmt.Errorf("validate notification proxy: %w", err) return nil, fmt.Errorf("validate notification proxy: %w", err)
} }
transport.Proxy = http.ProxyURL(parsed) transport.Proxy = http.ProxyURL(parsed)
transport.DialContext = notificationProxyDialer(timeout)
} }
return &http.Client{ return &http.Client{
Transport: transport, Transport: transport,
@@ -988,17 +952,6 @@ func validateOutboundURL(
return parsed, nil return parsed, nil
} }
func validateNotificationProxyURL(ctx context.Context, raw string) (*url.URL, error) {
parsed, err := parseOutboundURL(raw, false)
if err != nil {
return nil, err
}
if _, err := resolveNotificationProxyAddresses(ctx, parsed.Hostname()); err != nil {
return nil, err
}
return parsed, nil
}
func parseOutboundURL(raw string, requireHTTPS bool) (*url.URL, error) { func parseOutboundURL(raw string, requireHTTPS bool) (*url.URL, error) {
parsed, err := url.Parse(strings.TrimSpace(raw)) parsed, err := url.Parse(strings.TrimSpace(raw))
if err != nil || parsed.Hostname() == "" || parsed.IsAbs() == false { if err != nil || parsed.Hostname() == "" || parsed.IsAbs() == false {
@@ -1032,42 +985,17 @@ func restrictedDialer(timeout time.Duration) func(
} }
} }
func notificationProxyDialer(timeout time.Duration) func(
context.Context,
string,
string,
) (net.Conn, error) {
return func(ctx context.Context, network string, address string) (net.Conn, error) {
return dialNotification(ctx, network, address, timeout, true)
}
}
func dialRestricted( func dialRestricted(
ctx context.Context, ctx context.Context,
network string, network string,
address string, address string,
timeout time.Duration, timeout time.Duration,
) (net.Conn, error) {
return dialNotification(ctx, network, address, timeout, false)
}
func dialNotification(
ctx context.Context,
network string,
address string,
timeout time.Duration,
allowLocal bool,
) (net.Conn, error) { ) (net.Conn, error) {
host, port, err := net.SplitHostPort(address) host, port, err := net.SplitHostPort(address)
if err != nil { if err != nil {
return nil, fmt.Errorf("parse outbound address: %w", err) return nil, fmt.Errorf("parse outbound address: %w", err)
} }
var addresses []netip.Addr addresses, err := resolvePublicAddresses(ctx, host)
if allowLocal {
addresses, err = resolveNotificationProxyAddresses(ctx, host)
} else {
addresses, err = resolvePublicAddresses(ctx, host)
}
if err != nil { if err != nil {
return nil, err return nil, err
} }
@@ -1143,68 +1071,54 @@ func dialNotification(
if len(failures) == 0 { if len(failures) == 0 {
return nil, ctx.Err() return nil, ctx.Err()
} }
return nil, fmt.Errorf("dial notification destination: %w", errors.Join(failures...)) return nil, fmt.Errorf("dial public notification destination: %w", errors.Join(failures...))
} }
type notificationAllowedNetworksKey struct{}
func (s *Server) notificationDestinationContext(ctx context.Context) context.Context { func (s *Server) notificationDestinationContext(ctx context.Context) context.Context {
if ctx == nil { if ctx == nil {
return context.Background() ctx = context.Background()
} }
// Notification delivery is outbound administrator-configured traffic. It access := s.currentAccessConfig()
// must not inherit the inbound Web access policy: DNS Fake-IP ranges, LAN return context.WithValue(ctx, notificationAllowedNetworksKey{}, append([]netip.Prefix(nil), access.cidrs...))
// gateways, and local proxies are valid notification paths.
return ctx
} }
func notificationAddressAllowed(_ context.Context, address netip.Addr) bool { func notificationAddressAllowed(ctx context.Context, address netip.Addr) bool {
address = address.Unmap() address = address.Unmap()
if !notificationTransportAddress(address) { // Even an administrator-provided exception must never turn a notification
// endpoint into a loopback or cloud-metadata request. Private/LAN and
// benchmark ranges may be explicitly allowed for local push gateways and
// DNS Fake-IP deployments, but these process-local destinations stay closed.
if !address.IsValid() || address.IsUnspecified() || address.IsLoopback() ||
address.IsMulticast() || address.IsLinkLocalUnicast() ||
address == netip.MustParseAddr("100.100.100.200") {
return false return false
} }
for _, fakeIP := range notificationFakeIPNetworks { if publicNotificationAddress(address) {
if fakeIP.Contains(address) { return true
}
prefixes, _ := ctx.Value(notificationAllowedNetworksKey{}).([]netip.Prefix)
for _, prefix := range prefixes {
if prefix.Contains(address) {
return true return true
} }
} }
if !address.IsGlobalUnicast() { return false
return false
}
for _, blocked := range blockedNotificationDestinationNetworks {
if blocked.Contains(address) {
return false
}
}
return true
}
func notificationProxyAddressAllowed(address netip.Addr) bool {
return notificationTransportAddress(address.Unmap())
}
func notificationTransportAddress(address netip.Addr) bool {
return address.IsValid() && !address.IsUnspecified() && !address.IsMulticast() &&
!address.IsLinkLocalUnicast() && !address.IsLinkLocalMulticast() &&
address != netip.MustParseAddr("255.255.255.255") &&
address != netip.MustParseAddr("100.100.100.200")
} }
func resolvePublicAddresses(ctx context.Context, host string) ([]netip.Addr, error) { func resolvePublicAddresses(ctx context.Context, host string) ([]netip.Addr, error) {
return resolveNotificationAddresses(ctx, host, false)
}
func resolveNotificationProxyAddresses(ctx context.Context, host string) ([]netip.Addr, error) {
return resolveNotificationAddresses(ctx, host, true)
}
func resolveNotificationAddresses(ctx context.Context, host string, allowLocal bool) ([]netip.Addr, error) {
normalized := strings.ToLower(strings.TrimSuffix(strings.TrimSpace(host), ".")) normalized := strings.ToLower(strings.TrimSuffix(strings.TrimSpace(host), "."))
if normalized == "" { if normalized == "" || normalized == "localhost" ||
strings.HasSuffix(normalized, ".localhost") ||
normalized == "metadata" ||
strings.HasSuffix(normalized, ".internal") ||
strings.HasSuffix(normalized, ".local") {
return nil, fmt.Errorf("%w: blocked host name", errUnsafeDestination) return nil, fmt.Errorf("%w: blocked host name", errUnsafeDestination)
} }
if literal, err := netip.ParseAddr(normalized); err == nil { if literal, err := netip.ParseAddr(normalized); err == nil {
literal = literal.Unmap() literal = literal.Unmap()
if (!allowLocal && !notificationAddressAllowed(ctx, literal)) || if !notificationAddressAllowed(ctx, literal) {
(allowLocal && !notificationProxyAddressAllowed(literal)) {
return nil, fmt.Errorf("%w: %s", errUnsafeDestination, literal) return nil, fmt.Errorf("%w: %s", errUnsafeDestination, literal)
} }
return []netip.Addr{literal}, nil return []netip.Addr{literal}, nil
@@ -1219,8 +1133,7 @@ func resolveNotificationAddresses(ctx context.Context, host string, allowLocal b
result := make([]netip.Addr, 0, len(addresses)) result := make([]netip.Addr, 0, len(addresses))
for _, address := range addresses { for _, address := range addresses {
address = address.Unmap() address = address.Unmap()
if (!allowLocal && !notificationAddressAllowed(ctx, address)) || if !notificationAddressAllowed(ctx, address) {
(allowLocal && !notificationProxyAddressAllowed(address)) {
return nil, fmt.Errorf("%w: %s", errUnsafeDestination, address) return nil, fmt.Errorf("%w: %s", errUnsafeDestination, address)
} }
result = append(result, address) result = append(result, address)
@@ -1228,11 +1141,7 @@ func resolveNotificationAddresses(ctx context.Context, host string, allowLocal b
return result, nil return result, nil
} }
var notificationFakeIPNetworks = []netip.Prefix{ var blockedNotificationNetworks = []netip.Prefix{
netip.MustParsePrefix("198.18.0.0/15"),
}
var blockedNotificationDestinationNetworks = []netip.Prefix{
netip.MustParsePrefix("0.0.0.0/8"), netip.MustParsePrefix("0.0.0.0/8"),
netip.MustParsePrefix("10.0.0.0/8"), netip.MustParsePrefix("10.0.0.0/8"),
netip.MustParsePrefix("100.64.0.0/10"), netip.MustParsePrefix("100.64.0.0/10"),
@@ -1243,6 +1152,7 @@ var blockedNotificationDestinationNetworks = []netip.Prefix{
netip.MustParsePrefix("192.0.2.0/24"), netip.MustParsePrefix("192.0.2.0/24"),
netip.MustParsePrefix("192.88.99.0/24"), netip.MustParsePrefix("192.88.99.0/24"),
netip.MustParsePrefix("192.168.0.0/16"), netip.MustParsePrefix("192.168.0.0/16"),
netip.MustParsePrefix("198.18.0.0/15"),
netip.MustParsePrefix("198.51.100.0/24"), netip.MustParsePrefix("198.51.100.0/24"),
netip.MustParsePrefix("203.0.113.0/24"), netip.MustParsePrefix("203.0.113.0/24"),
netip.MustParsePrefix("224.0.0.0/4"), netip.MustParsePrefix("224.0.0.0/4"),
@@ -1257,6 +1167,19 @@ var blockedNotificationDestinationNetworks = []netip.Prefix{
netip.MustParsePrefix("ff00::/8"), netip.MustParsePrefix("ff00::/8"),
} }
func publicNotificationAddress(address netip.Addr) bool {
if !address.IsValid() || !address.IsGlobalUnicast() {
return false
}
address = address.Unmap()
for _, blocked := range blockedNotificationNetworks {
if blocked.Contains(address) {
return false
}
}
return true
}
func configString(config map[string]any, key string) string { func configString(config map[string]any, key string) string {
value, _ := config[key].(string) value, _ := config[key].(string)
return strings.TrimSpace(value) return strings.TrimSpace(value)
+28 -196
View File
@@ -73,7 +73,7 @@ func decodeSettingsResponse(t *testing.T, recorder *httptest.ResponseRecorder) m
return response return response
} }
func TestNotificationSettingsAlwaysReturnsKnownChannelsAndPreservesSecrets(t *testing.T) { func TestNotificationSettingsAlwaysReturnsFiveChannelsAndPreservesSecrets(t *testing.T) {
test := newSettingsAPITest(t) test := newSettingsAPITest(t)
recorder := test.request(t, http.MethodGet, "/api/settings/notifications", "") recorder := test.request(t, http.MethodGet, "/api/settings/notifications", "")
if recorder.Code != http.StatusOK { if recorder.Code != http.StatusOK {
@@ -179,73 +179,6 @@ func TestWecomNotificationSettingsPreserveWebhookURLs(t *testing.T) {
} }
} }
func TestLarkNotificationSettingsPreserveSecrets(t *testing.T) {
test := newSettingsAPITest(t)
webhookURL := "https://open.feishu.cn/open-apis/bot/v2/hook/lark-token"
secret := "lark-signing-secret"
template := `{"msg_type":"text","content":{"text":{{message}}}}`
first, err := json.Marshal(map[string]any{
"lark": map[string]any{
"enabled": true, "url": webhookURL, "signing_enabled": true, "secret": secret, "payload_template": template,
},
})
if err != nil {
t.Fatal(err)
}
recorder := test.request(t, http.MethodPut, "/api/settings/notifications", string(first))
if recorder.Code != http.StatusOK {
t.Fatalf("first PUT status = %d, body = %s", recorder.Code, recorder.Body)
}
if bytes.Contains(recorder.Body.Bytes(), []byte("lark-token")) || bytes.Contains(recorder.Body.Bytes(), []byte(secret)) {
t.Fatalf("PUT response leaked Lark secrets: %s", recorder.Body)
}
response := decodeSettingsResponse(t, recorder)
lark := response["data"].(map[string]any)["lark"].(map[string]any)
if lark["url"] != store.SecretMask || lark["secret"] != store.SecretMask {
t.Fatalf("redacted Lark config = %#v", lark)
}
second, err := json.Marshal(map[string]any{
"lark": map[string]any{
"enabled": true, "url": store.SecretMask, "signing_enabled": true, "secret": store.SecretMask, "payload_template": template,
},
})
if err != nil {
t.Fatal(err)
}
recorder = test.request(t, http.MethodPut, "/api/settings/notifications", string(second))
if recorder.Code != http.StatusOK {
t.Fatalf("masked PUT status = %d, body = %s", recorder.Code, recorder.Body)
}
stored, err := test.database.NotificationSetting(context.Background(), "lark")
if err != nil || !bytes.Contains(stored.Config, []byte("lark-token")) || !bytes.Contains(stored.Config, []byte(secret)) {
t.Fatalf("stored Lark config = %s, err = %v", stored.Config, err)
}
}
func TestUnsignedLarkNotificationDoesNotCreateSigningSecret(t *testing.T) {
test := newSettingsAPITest(t)
template := `{"msg_type":"text","content":{"text":{{message}}}}`
body, err := json.Marshal(map[string]any{
"lark": map[string]any{
"enabled": true, "url": "https://open.larksuite.com/open-apis/bot/v2/hook/token",
"signing_enabled": false, "payload_template": template,
},
})
if err != nil {
t.Fatal(err)
}
recorder := test.request(t, http.MethodPut, "/api/settings/notifications", string(body))
if recorder.Code != http.StatusOK {
t.Fatalf("PUT status = %d, body = %s", recorder.Code, recorder.Body)
}
response := decodeSettingsResponse(t, recorder)
lark := response["data"].(map[string]any)["lark"].(map[string]any)
if _, exists := lark["secret"]; exists {
t.Fatalf("unsigned Lark config unexpectedly contains a secret: %#v", lark)
}
}
func TestResolveWecomNotificationTestConfigAcceptsUnsavedWebhookURLs(t *testing.T) { func TestResolveWecomNotificationTestConfigAcceptsUnsavedWebhookURLs(t *testing.T) {
test := newSettingsAPITest(t) test := newSettingsAPITest(t)
raw, err := json.Marshal(map[string]any{ raw, err := json.Marshal(map[string]any{
@@ -299,45 +232,6 @@ func TestResolveWecomNotificationTestConfigMergesMaskedAndUnsavedWebhookURLs(t *
} }
} }
func TestResolveLarkNotificationTestConfigMergesMaskedSecrets(t *testing.T) {
test := newSettingsAPITest(t)
storedURL := "https://open.larksuite.com/open-apis/bot/v2/hook/stored"
storedConfig, err := json.Marshal(map[string]any{
"url": storedURL,
"signing_enabled": true,
"secret": "stored-signing-secret",
"payload_template": `{"msg_type":"text","content":{"text":{{message}}}}`,
})
if err != nil {
t.Fatal(err)
}
if err := test.database.UpsertNotificationSetting(context.Background(), store.NotificationSetting{
Channel: "lark",
Config: storedConfig,
}); err != nil {
t.Fatal(err)
}
raw, err := json.Marshal(map[string]any{
"url": store.SecretMask,
"signing_enabled": true,
"secret": store.SecretMask,
"payload_template": `{"msg_type":"text","content":{"text":{{message}}}}`,
})
if err != nil {
t.Fatal(err)
}
resolved, _, err := test.server.resolveNotificationTestConfig(context.Background(), "lark", raw)
if err != nil {
t.Fatal(err)
}
if resolved["url"] != storedURL {
t.Fatalf("resolved URL = %#v", resolved["url"])
}
if resolved["secret"] != "stored-signing-secret" {
t.Fatalf("resolved secret = %#v", resolved["secret"])
}
}
func TestNotificationSettingsRejectsUnknownAndMalformedInput(t *testing.T) { func TestNotificationSettingsRejectsUnknownAndMalformedInput(t *testing.T) {
test := newSettingsAPITest(t) test := newSettingsAPITest(t)
cases := []struct { cases := []struct {
@@ -390,36 +284,6 @@ func TestNotificationSettingsRejectsUnknownAndMalformedInput(t *testing.T) {
body: `{"webhook":{"enabled":true,"headers":{"X:Bad":"v"}}}`, body: `{"webhook":{"enabled":true,"headers":{"X:Bad":"v"}}}`,
code: "invalid_notification_config", code: "invalid_notification_config",
}, },
{
name: "invalid Lark payload template",
body: `{"lark":{"enabled":true,"payload_template":"[]"}}`,
code: "invalid_notification_config",
},
{
name: "enabled Lark config without webhook URL",
body: `{"lark":{"enabled":true,"payload_template":"{\"msg_type\":\"text\"}"}}`,
code: "invalid_notification_config",
},
{
name: "enabled Lark signing without secret",
body: `{"lark":{"enabled":true,"url":"https://open.larksuite.com/open-apis/bot/v2/hook/token","signing_enabled":true,"payload_template":"{\"msg_type\":\"text\"}"}}`,
code: "invalid_notification_config",
},
{
name: "changed Lark URL with masked signing secret",
body: `{"lark":{"enabled":true,"url":"https://open.larksuite.com/open-apis/bot/v2/hook/new-token","signing_enabled":true,"secret":"********","payload_template":"{\"msg_type\":\"text\"}"}}`,
code: "invalid_notification_config",
},
{
name: "insecure Lark group bot URL",
body: `{"lark":{"enabled":false,"url":"http://open.larksuite.com/open-apis/bot/v2/hook/token"}}`,
code: "invalid_notification_config",
},
{
name: "non-Lark group bot URL",
body: `{"lark":{"enabled":false,"url":"https://example.com/open-apis/bot/v2/hook/token"}}`,
code: "invalid_notification_config",
},
{ {
name: "null body", name: "null body",
body: `null`, body: `null`,
@@ -505,10 +369,6 @@ func TestNotificationTestsBlockSSRFAndUnsupportedChannels(t *testing.T) {
if recorder.Code != http.StatusBadRequest { if recorder.Code != http.StatusBadRequest {
t.Fatalf("Telegram metadata status = %d, body = %s", recorder.Code, recorder.Body) t.Fatalf("Telegram metadata status = %d, body = %s", recorder.Code, recorder.Body)
} }
response = decodeSettingsResponse(t, recorder)
if response["error"].(map[string]any)["code"] != "unsafe_destination" {
t.Fatalf("Telegram metadata response = %#v", response)
}
recorder = test.request( recorder = test.request(
t, t,
@@ -902,28 +762,26 @@ func TestTrafficAnalysisIsUnavailableOutsideDeveloperMode(t *testing.T) {
} }
} }
func TestNotificationDestinationAddressPolicyIsIndependentFromWebAccess(t *testing.T) { func TestNotificationDestinationAddressPolicy(t *testing.T) {
blocked := []string{ blocked := []string{
"0.0.0.0", "10.0.0.1", "100.100.100.200", "127.0.0.1", "0.0.0.0", "10.0.0.1", "100.100.100.200", "127.0.0.1",
"169.254.169.254", "172.16.0.1", "192.168.1.1", "224.0.0.1", "169.254.169.254", "172.16.0.1", "192.168.1.1", "198.18.0.1",
"255.255.255.255", "::", "::1", "fc00::1", "fe80::1", "ff02::1", "::1", "fc00::1", "fe80::1", "2001:db8::1",
} }
for _, text := range blocked { for _, text := range blocked {
address := netip.MustParseAddr(text) address := netip.MustParseAddr(text)
if notificationAddressAllowed(context.Background(), address) { if publicNotificationAddress(address) {
t.Errorf("%s was incorrectly accepted for notification transport", text) t.Errorf("%s was incorrectly accepted as public", text)
} }
} }
for _, text := range []string{ for _, text := range []string{"1.1.1.1", "8.8.8.8", "2606:4700:4700::1111"} {
"1.1.1.1", "198.18.0.1", "2606:4700:4700::1111",
} {
address := netip.MustParseAddr(text) address := netip.MustParseAddr(text)
if !notificationAddressAllowed(context.Background(), address) { if !publicNotificationAddress(address) {
t.Errorf("%s was incorrectly blocked for notification transport", text) t.Errorf("%s was incorrectly blocked", text)
} }
} }
if _, err := resolvePublicAddresses(context.Background(), "localhost"); err == nil { if _, err := resolvePublicAddresses(context.Background(), "localhost"); err == nil {
t.Fatal("local notification destination was not blocked") t.Fatal("localhost was not blocked")
} }
if _, err := resolvePublicAddresses( if _, err := resolvePublicAddresses(
context.Background(), context.Background(),
@@ -931,53 +789,27 @@ func TestNotificationDestinationAddressPolicyIsIndependentFromWebAccess(t *testi
); err == nil { ); err == nil {
t.Fatal("metadata IP was not blocked") t.Fatal("metadata IP was not blocked")
} }
server := &Server{access: parsedAccessConfig{mode: "internal"}} allowedContext := context.WithValue(
notificationContext := server.notificationDestinationContext(context.Background()) context.Background(),
if addresses, err := resolvePublicAddresses(notificationContext, "198.18.0.1"); err != nil || len(addresses) != 1 { notificationAllowedNetworksKey{},
t.Fatalf("Fake-IP notification destination = %v, %v", addresses, err) []netip.Prefix{netip.MustParsePrefix("198.18.0.0/15")},
)
if addresses, err := resolvePublicAddresses(allowedContext, "198.18.0.1"); err != nil || len(addresses) != 1 {
t.Fatalf("explicit Fake-IP notification allowlist = %v, %v", addresses, err)
} }
} if _, err := resolvePublicAddresses(allowedContext, "169.254.169.254"); err == nil {
t.Fatal("unlisted metadata IP was allowed")
func TestNotificationProxyAcceptsLocalAddressWithoutWebAccessAllowlist(t *testing.T) { }
server := &Server{access: parsedAccessConfig{mode: "internal"}} wideAllowedContext := context.WithValue(
ctx := server.notificationDestinationContext(context.Background()) context.Background(),
for _, host := range []string{"127.0.0.1", "10.0.0.1", "192.168.1.1", "198.18.0.1", "::1"} { notificationAllowedNetworksKey{},
if addresses, err := resolveNotificationProxyAddresses(ctx, host); err != nil || len(addresses) != 1 { []netip.Prefix{netip.MustParsePrefix("0.0.0.0/0")},
t.Errorf("local notification proxy %s = %v, %v", host, addresses, err) )
for _, address := range []string{"127.0.0.1", "169.254.169.254", "100.100.100.200"} {
if _, err := resolvePublicAddresses(wideAllowedContext, address); err == nil {
t.Fatalf("non-overridable destination %s was allowed", address)
} }
} }
if _, err := resolveNotificationProxyAddresses(ctx, "169.254.169.254"); err == nil {
t.Fatal("cloud metadata address was accepted as a notification proxy")
}
}
func TestRestrictedNotificationClientConnectsThroughLocalProxy(t *testing.T) {
var hits atomic.Int32
proxy := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, request *http.Request) {
hits.Add(1)
if request.URL.Host != "1.1.1.1" {
t.Errorf("proxy request host = %q", request.URL.Host)
}
w.WriteHeader(http.StatusNoContent)
}))
defer proxy.Close()
client, err := restrictedHTTPClient(context.Background(), 2*time.Second, proxy.URL)
if err != nil {
t.Fatal(err)
}
request, err := http.NewRequest(http.MethodGet, "http://1.1.1.1/test", nil)
if err != nil {
t.Fatal(err)
}
response, err := client.Do(request)
if err != nil {
t.Fatal(err)
}
_ = response.Body.Close()
if response.StatusCode != http.StatusNoContent || hits.Load() != 1 {
t.Fatalf("local proxy status = %d, hits = %d", response.StatusCode, hits.Load())
}
} }
func TestRestrictedNotificationClientCapsTimeoutAndRedirects(t *testing.T) { func TestRestrictedNotificationClientCapsTimeoutAndRedirects(t *testing.T) {
+1 -6
View File
@@ -236,10 +236,6 @@ func (s *Server) handleSMSSend(w http.ResponseWriter, r *http.Request) {
s.writeStoreError(w, err) s.writeStoreError(w, err)
return return
} }
if store.NormalizeDeviceType(config.DeviceType) == store.DeviceTypeWiFi410 {
writeError(w, http.StatusNotImplemented, "device_feature_unsupported", "SMS is not supported by the native OpenStick 410 backend")
return
}
entry, physicalID, present := s.physicalForConfig(config) entry, physicalID, present := s.physicalForConfig(config)
if !s.requirePhysicalDevice(w, present) { if !s.requirePhysicalDevice(w, present) {
return return
@@ -671,8 +667,7 @@ func (s *Server) syncModemSMS(ctx context.Context, onlyDevice string) {
} }
func supportsModemSMSStorage(config store.Device) bool { func supportsModemSMSStorage(config store.Device) bool {
deviceType := store.NormalizeDeviceType(config.DeviceType) return store.NormalizeDeviceType(config.DeviceType) != store.DeviceTypeUSBSIMReader
return deviceType != store.DeviceTypeUSBSIMReader && deviceType != store.DeviceTypeWiFi410
} }
func shouldDeferModemSMSSync(state vowifi.State, stateErr error) bool { func shouldDeferModemSMSSync(state vowifi.State, stateErr error) bool {
-9
View File
@@ -57,15 +57,6 @@ func TestSMSThreadAllDevicesUsesIMSIFilter(t *testing.T) {
} }
} }
func TestNative410DoesNotUseModemSMSStorage(t *testing.T) {
if supportsModemSMSStorage(store.Device{DeviceType: store.DeviceTypeWiFi410}) {
t.Fatal("native OpenStick 410 unexpectedly enabled modem SMS storage polling")
}
if !supportsModemSMSStorage(store.Device{DeviceType: store.DeviceTypePCIeEC20EC25}) {
t.Fatal("EC20 modem SMS storage polling was disabled")
}
}
func TestSMSThreadConfiguredDeviceUsesStableIMEI(t *testing.T) { func TestSMSThreadConfiguredDeviceUsesStableIMEI(t *testing.T) {
ctx := context.Background() ctx := context.Background()
database, err := store.Open(ctx, ":memory:") database, err := store.Open(ctx, ":memory:")
+2 -4
View File
@@ -24,7 +24,7 @@ import (
const smsNotificationPollInterval = 2 * time.Second const smsNotificationPollInterval = 2 * time.Second
var smsOnlyNotificationChannels = []string{"bark", "email", "pushplus", "webhook", "wecom", "lark"} var smsOnlyNotificationChannels = []string{"bark", "email", "pushplus", "webhook", "wecom"}
type smsNotification struct { type smsNotification struct {
DeviceID string DeviceID string
@@ -143,7 +143,7 @@ func (s *Server) smsNotificationConfig(ctx context.Context, channel string) (map
func validateSMSNotificationConfig(channel string, config map[string]any) error { func validateSMSNotificationConfig(channel string, config map[string]any) error {
switch channel { switch channel {
case "bark", "email", "webhook", "wecom", "lark": case "bark", "email", "webhook", "wecom":
if err := validateNotificationTestConfig(channel, config); err != nil { if err := validateNotificationTestConfig(channel, config); err != nil {
return err return err
} }
@@ -204,8 +204,6 @@ func sendSMSNotification(ctx context.Context, channel string, config map[string]
return sendWebhookSMSNotification(ctx, config, message) return sendWebhookSMSNotification(ctx, config, message)
case "wecom": case "wecom":
return sendWecomNotification(ctx, config, wecomSMSValues(message)) return sendWecomNotification(ctx, config, wecomSMSValues(message))
case "lark":
return sendLarkNotification(ctx, config, larkSMSValues(message))
default: default:
return fmt.Errorf("unsupported SMS notification channel %q", channel) return fmt.Errorf("unsupported SMS notification channel %q", channel)
} }
-31
View File
@@ -66,31 +66,6 @@ func TestWecomAutomaticTaskValuesLeaveSMSFieldsEmpty(t *testing.T) {
} }
} }
func TestLarkTemplateValuesCoverSMSAndAutomaticTasks(t *testing.T) {
message := smsNotification{
DeviceID: "device-1", DeviceName: "客厅", DeviceLabel: "EC20",
Number: "+447386", Time: time.Unix(1_700_000_000, 0), Content: "hello",
}
smsValues := larkSMSValues(message)
if smsValues["event"] != "sms.received" || smsValues["title"] != "收到新短信" ||
smsValues["message"] != message.Text() || smsValues["content"] != "hello" ||
smsValues["device_label"] != "EC20" {
t.Fatalf("Lark SMS values = %#v", smsValues)
}
taskValues := larkAutomaticTaskValues(automaticTaskNotification{
Title: "自动任务执行成功", Text: "任务已完成", Time: time.Unix(1_700_000_000, 0),
})
if taskValues["event"] != "automatic_task.completed" || taskValues["title"] != "自动任务执行成功" || taskValues["message"] != "任务已完成" {
t.Fatalf("Lark automatic task values = %#v", taskValues)
}
for _, name := range []string{"content", "number", "device_id", "device_name", "device_label", "time"} {
if taskValues[name] != "" {
t.Fatalf("%s = %q, want empty", name, taskValues[name])
}
}
}
func TestValidateSMSNotificationConfig(t *testing.T) { func TestValidateSMSNotificationConfig(t *testing.T) {
valid := map[string]map[string]any{ valid := map[string]map[string]any{
"bark": {"urls": []any{"https://api.day.app/key"}}, "bark": {"urls": []any{"https://api.day.app/key"}},
@@ -101,12 +76,6 @@ func TestValidateSMSNotificationConfig(t *testing.T) {
"urls": []any{"https://qyapi.weixin.qq.com/cgi-bin/webhook/send?key=secret"}, "urls": []any{"https://qyapi.weixin.qq.com/cgi-bin/webhook/send?key=secret"},
"payload_template": `{"msgtype":"text","text":{"content":{{message}}}}`, "payload_template": `{"msgtype":"text","text":{"content":{{message}}}}`,
}, },
"lark": {
"url": "https://open.larksuite.com/open-apis/bot/v2/hook/secret",
"signing_enabled": true,
"secret": "signing-secret",
"payload_template": `{"msg_type":"text","content":{"text":{{message}}}}`,
},
} }
for channel, config := range valid { for channel, config := range valid {
if err := validateSMSNotificationConfig(channel, config); err != nil { if err := validateSMSNotificationConfig(channel, config); err != nil {
+5 -2
View File
@@ -3,6 +3,7 @@ package server
import ( import (
"context" "context"
"errors" "errors"
"net/netip"
"strings" "strings"
"testing" "testing"
"time" "time"
@@ -57,8 +58,10 @@ func TestTelegramAPIURLRejectsMalformedTemplates(t *testing.T) {
} }
} }
func TestTelegramPollingAcceptsFakeIPWithoutWebAccessAllowlist(t *testing.T) { func TestTelegramPollingUsesExplicitFakeIPDestinationAllowlist(t *testing.T) {
bot := &telegramBot{server: &Server{access: parsedAccessConfig{mode: "internal"}}} bot := &telegramBot{server: &Server{access: parsedAccessConfig{
cidrs: []netip.Prefix{netip.MustParsePrefix("198.18.0.0/15")},
}}}
ctx := bot.notificationDestinationContext(context.Background()) ctx := bot.notificationDestinationContext(context.Background())
if _, err := validateTelegramAPIURL(ctx, "https://198.18.0.34", "123456:test-token", "getUpdates"); err != nil { if _, err := validateTelegramAPIURL(ctx, "https://198.18.0.34", "123456:test-token", "getUpdates"); err != nil {
t.Fatalf("explicitly allowed Telegram Fake-IP was rejected: %v", err) t.Fatalf("explicitly allowed Telegram Fake-IP was rejected: %v", err)
-168
View File
@@ -220,124 +220,6 @@ func TestMigration8DefaultsExistingDevicesToPCIeType(t *testing.T) {
} }
} }
func TestMigration19AcceptsDevelopmentDatabaseAndPreservesCardData(t *testing.T) {
ctx := context.Background()
path := filepath.Join(t.TempDir(), "development-schema.db")
raw, err := sql.Open("sqlite", path)
if err != nil {
t.Fatal(err)
}
for version := 1; version <= 16; version++ {
for _, statement := range migrationStatements(version) {
if _, err := raw.ExecContext(ctx, statement); err != nil {
t.Fatalf("create v%d schema: %v", version, err)
}
}
}
if _, err := raw.ExecContext(ctx, `
INSERT INTO devices (id, name, created_at, updated_at)
VALUES ('ec20-1', 'EC20', 100, 100);
INSERT INTO card_policies (
iccid, network_enabled, vowifi_enabled, airplane_enabled,
apn, ip_version, source, created_at, updated_at, custom_phone_number
) VALUES (
'8900000000000000019', 0, 1, 1,
'ims', 'IPV4V6', 'user', 100, 100, '447700900019'
);
INSERT INTO card_apn_profiles (
iccid, apn, ip_version, created_at, updated_at,
username, password, proxy, mcc, mnc, roaming_ip_version, auth_type
) VALUES (
'8900000000000000019', 'mobile.example', 'IPV4V6', 100, 100,
'user', 'secret', '', '234', '10', 'IP', 'PAP'
);
PRAGMA user_version = 16;
`); err != nil {
t.Fatal(err)
}
if err := raw.Close(); err != nil {
t.Fatal(err)
}
database := openTestStore(t, path)
policy, err := database.CardPolicy(ctx, "8900000000000000019")
if err != nil {
t.Fatal(err)
}
if !policy.VoWiFiEnabled || !policy.AirplaneEnabled || policy.CustomPhoneNumber != "447700900019" {
t.Fatalf("migrated card policy = %#v", policy)
}
profiles, err := database.ListCardAPNProfiles(ctx, "8900000000000000019")
if err != nil {
t.Fatal(err)
}
if len(profiles) != 1 || profiles[0].APN != "mobile.example" || profiles[0].Username != "user" || profiles[0].AuthType != "PAP" {
t.Fatalf("migrated APN profiles = %#v", profiles)
}
var version int
if err := database.db.QueryRowContext(ctx, `PRAGMA user_version`).Scan(&version); err != nil {
t.Fatal(err)
}
if version != 19 {
t.Fatalf("schema version = %d, want 19", version)
}
for _, column := range []string{
"ims_apn", "ims_private_identity", "ims_public_identity", "ims_sms_center",
"ims_transport", "ims_allow_imsi_derived_identity", "vowifi_eap_method",
"vowifi_allow_sha1", "vowifi_use_modp1024",
} {
var count int
if err := database.db.QueryRowContext(ctx, `
SELECT COUNT(*) FROM pragma_table_info('devices') WHERE name = ?
`, column).Scan(&count); err != nil {
t.Fatal(err)
}
if count != 1 {
t.Fatalf("migration 19 column %q count = %d", column, count)
}
}
}
func TestMigration19AcceptsDevelopmentColumnsAlreadyPresent(t *testing.T) {
ctx := context.Background()
path := filepath.Join(t.TempDir(), "development-columns.db")
raw, err := sql.Open("sqlite", path)
if err != nil {
t.Fatal(err)
}
for version := 1; version <= 18; version++ {
for _, statement := range migrationStatements(version) {
if _, err := raw.ExecContext(ctx, statement); err != nil {
t.Fatalf("create v%d schema: %v", version, err)
}
}
}
// The development build added these columns while still reporting schema
// 18. Migration 19 must treat that layout as compatible rather than fail on
// the first duplicate ALTER TABLE statement.
for _, statement := range migrationStatements(19) {
if _, err := raw.ExecContext(ctx, statement); err != nil {
t.Fatalf("create development column: %v", err)
}
}
if _, err := raw.ExecContext(ctx, `PRAGMA user_version = 18`); err != nil {
t.Fatal(err)
}
if err := raw.Close(); err != nil {
t.Fatal(err)
}
database := openTestStore(t, path)
var version int
if err := database.db.QueryRowContext(ctx, `PRAGMA user_version`).Scan(&version); err != nil {
t.Fatal(err)
}
if version != 19 {
t.Fatalf("schema version = %d, want 19", version)
}
}
func TestMigration4PreservesIMSRedeliveryAndUsesReceiptTime(t *testing.T) { func TestMigration4PreservesIMSRedeliveryAndUsesReceiptTime(t *testing.T) {
ctx := context.Background() ctx := context.Background()
path := filepath.Join(t.TempDir(), "ims-redelivery.db") path := filepath.Join(t.TempDir(), "ims-redelivery.db")
@@ -917,56 +799,6 @@ func TestNotificationArraySecretPreservation(t *testing.T) {
} }
} }
func TestLarkNotificationSecretsAreRedactedAndPreserved(t *testing.T) {
ctx := context.Background()
database := openTestStore(t, ":memory:")
originalURL := "https://open.feishu.cn/open-apis/bot/v2/hook/lark-token"
if err := database.UpsertNotificationSetting(ctx, NotificationSetting{
Channel: "lark", Enabled: true,
Config: json.RawMessage(`{"url":"` + originalURL + `","secret":"signing-secret"}`),
}); err != nil {
t.Fatal(err)
}
setting, err := database.NotificationSetting(ctx, "lark")
if err != nil {
t.Fatal(err)
}
var redacted map[string]any
if err := json.Unmarshal(setting.Redacted().Config, &redacted); err != nil {
t.Fatal(err)
}
if redacted["url"] != SecretMask || redacted["secret"] != SecretMask {
t.Fatalf("redacted Lark config = %#v", redacted)
}
if err := database.UpsertNotificationSetting(ctx, NotificationSetting{
Channel: "lark", Enabled: true,
Config: json.RawMessage(`{"url":"` + SecretMask + `","secret":"` + SecretMask + `"}`),
}); err != nil {
t.Fatal(err)
}
setting, err = database.NotificationSetting(ctx, "lark")
if err != nil {
t.Fatal(err)
}
if !bytes.Contains(setting.Config, []byte(originalURL)) || !bytes.Contains(setting.Config, []byte("signing-secret")) {
t.Fatalf("stored Lark config = %s", setting.Config)
}
}
func TestNotificationRedactionKeepsEmptySensitiveValuesEmpty(t *testing.T) {
setting := NotificationSetting{
Config: json.RawMessage(`{"url":"","secret":""}`),
SensitiveFields: []string{"url", "secret"},
}
var redacted map[string]any
if err := json.Unmarshal(setting.Redacted().Config, &redacted); err != nil {
t.Fatal(err)
}
if redacted["url"] != "" || redacted["secret"] != "" {
t.Fatalf("empty sensitive values were masked: %#v", redacted)
}
}
func TestEventsPoliciesAndTraffic(t *testing.T) { func TestEventsPoliciesAndTraffic(t *testing.T) {
ctx := context.Background() ctx := context.Background()
database := openTestStore(t, ":memory:") database := openTestStore(t, ":memory:")
-117
View File
@@ -264,123 +264,6 @@ func migrationStatements(version int) []string {
return []string{ return []string{
`ALTER TABLE devices ADD COLUMN sim_pin TEXT NOT NULL DEFAULT ''`, `ALTER TABLE devices ADD COLUMN sim_pin TEXT NOT NULL DEFAULT ''`,
} }
case 17:
// Some development builds recorded automatic-task support in an older
// migration. Recreate the objects idempotently so databases from either
// history converge before later migrations run.
return []string{
`CREATE TABLE IF NOT EXISTS automatic_tasks (
id INTEGER PRIMARY KEY AUTOINCREMENT,
name TEXT NOT NULL,
enabled INTEGER NOT NULL DEFAULT 1 CHECK (enabled IN (0, 1)),
device_id TEXT NOT NULL,
profile_iccid TEXT NOT NULL,
profile_aid TEXT NOT NULL DEFAULT '',
task_type TEXT NOT NULL CHECK (task_type IN ('sms', 'call', 'public_ip')),
environment TEXT NOT NULL CHECK (environment IN ('vowifi', 'cellular')),
interval_days INTEGER NOT NULL CHECK (interval_days BETWEEN 1 AND 365),
start_date TEXT NOT NULL,
run_time TEXT NOT NULL,
timezone TEXT NOT NULL DEFAULT 'Local',
payload_json TEXT NOT NULL DEFAULT '{}',
retry_count INTEGER NOT NULL DEFAULT 0 CHECK (retry_count BETWEEN 0 AND 10),
notify INTEGER NOT NULL DEFAULT 0 CHECK (notify IN (0, 1)),
next_run_at INTEGER NOT NULL,
last_run_at INTEGER NOT NULL DEFAULT 0,
last_status TEXT NOT NULL DEFAULT '',
last_error TEXT NOT NULL DEFAULT '',
created_at INTEGER NOT NULL,
updated_at INTEGER NOT NULL,
FOREIGN KEY (device_id) REFERENCES devices(id) ON DELETE CASCADE
)`,
`CREATE INDEX IF NOT EXISTS automatic_tasks_due_idx ON automatic_tasks(enabled, next_run_at, id)`,
`CREATE INDEX IF NOT EXISTS automatic_tasks_device_idx ON automatic_tasks(device_id, next_run_at, id)`,
`CREATE TABLE IF NOT EXISTS automatic_task_runs (
id INTEGER PRIMARY KEY AUTOINCREMENT,
task_id INTEGER NOT NULL,
device_id TEXT NOT NULL,
scheduled_at INTEGER NOT NULL,
started_at INTEGER NOT NULL DEFAULT 0,
finished_at INTEGER NOT NULL DEFAULT 0,
status TEXT NOT NULL CHECK (status IN ('queued', 'running', 'success', 'failed')),
attempts INTEGER NOT NULL DEFAULT 0,
output TEXT NOT NULL DEFAULT '',
error TEXT NOT NULL DEFAULT '',
created_at INTEGER NOT NULL,
updated_at INTEGER NOT NULL,
FOREIGN KEY (task_id) REFERENCES automatic_tasks(id) ON DELETE CASCADE
)`,
`CREATE INDEX IF NOT EXISTS automatic_task_runs_task_idx ON automatic_task_runs(task_id, id DESC)`,
`CREATE INDEX IF NOT EXISTS automatic_task_runs_status_idx ON automatic_task_runs(status, id)`,
}
case 18:
// A short-lived schema lineage kept the original card-policy CHECK,
// which rejected the supported VoWiFi + airplane-mode state. Rebuild
// both related tables so all released and development databases converge
// without dropping policies or custom APNs.
return []string{
`ALTER TABLE card_apn_profiles RENAME TO card_apn_profiles_v17`,
`ALTER TABLE card_policies RENAME TO card_policies_v17`,
`CREATE TABLE card_policies (
iccid TEXT PRIMARY KEY,
network_enabled INTEGER NOT NULL DEFAULT 0 CHECK (network_enabled IN (0, 1)),
vowifi_enabled INTEGER NOT NULL DEFAULT 0 CHECK (vowifi_enabled IN (0, 1)),
airplane_enabled INTEGER NOT NULL DEFAULT 0 CHECK (airplane_enabled IN (0, 1)),
apn TEXT NOT NULL DEFAULT '',
ip_version TEXT NOT NULL DEFAULT '',
source TEXT NOT NULL DEFAULT '',
created_at INTEGER NOT NULL,
updated_at INTEGER NOT NULL,
custom_phone_number TEXT NOT NULL DEFAULT ''
)`,
`INSERT INTO card_policies (
iccid, network_enabled, vowifi_enabled, airplane_enabled,
apn, ip_version, source, created_at, updated_at, custom_phone_number
) SELECT
iccid, network_enabled, vowifi_enabled, airplane_enabled,
apn, ip_version, source, created_at, updated_at, custom_phone_number
FROM card_policies_v17`,
`CREATE TABLE card_apn_profiles_new (
id INTEGER PRIMARY KEY AUTOINCREMENT,
iccid TEXT NOT NULL,
apn TEXT NOT NULL,
ip_version TEXT NOT NULL DEFAULT 'IPV4V6' CHECK (ip_version IN ('IP', 'IPV6', 'IPV4V6')),
created_at INTEGER NOT NULL,
updated_at INTEGER NOT NULL,
username TEXT NOT NULL DEFAULT '',
password TEXT NOT NULL DEFAULT '',
proxy TEXT NOT NULL DEFAULT '',
mcc TEXT NOT NULL DEFAULT '',
mnc TEXT NOT NULL DEFAULT '',
roaming_ip_version TEXT NOT NULL DEFAULT 'IP' CHECK (roaming_ip_version IN ('IP', 'IPV6', 'IPV4V6')),
auth_type TEXT NOT NULL DEFAULT 'NONE' CHECK (auth_type IN ('NONE', 'PAP', 'CHAP', 'PAP_OR_CHAP')),
UNIQUE (iccid, apn, ip_version),
FOREIGN KEY (iccid) REFERENCES card_policies(iccid) ON DELETE CASCADE
)`,
`INSERT INTO card_apn_profiles_new
SELECT id, iccid, apn, ip_version, created_at, updated_at,
username, password, proxy, mcc, mnc, roaming_ip_version, auth_type
FROM card_apn_profiles_v17`,
`DROP TABLE card_apn_profiles_v17`,
`DROP TABLE card_policies_v17`,
`ALTER TABLE card_apn_profiles_new RENAME TO card_apn_profiles`,
`CREATE INDEX card_apn_profiles_iccid_idx ON card_apn_profiles(iccid, id)`,
}
case 19:
// Compatibility columns written by the Qualcomm/IMS development build.
// The stable server may leave them unused, but retaining them makes a
// database created by that build safely readable after an upgrade.
return []string{
`ALTER TABLE devices ADD COLUMN ims_apn TEXT NOT NULL DEFAULT 'ims'`,
`ALTER TABLE devices ADD COLUMN ims_private_identity TEXT NOT NULL DEFAULT ''`,
`ALTER TABLE devices ADD COLUMN ims_public_identity TEXT NOT NULL DEFAULT ''`,
`ALTER TABLE devices ADD COLUMN ims_sms_center TEXT NOT NULL DEFAULT ''`,
`ALTER TABLE devices ADD COLUMN ims_transport TEXT NOT NULL DEFAULT 'tcp'`,
`ALTER TABLE devices ADD COLUMN ims_allow_imsi_derived_identity INTEGER NOT NULL DEFAULT 1 CHECK (ims_allow_imsi_derived_identity IN (0, 1))`,
`ALTER TABLE devices ADD COLUMN vowifi_eap_method TEXT NOT NULL DEFAULT 'aka'`,
`ALTER TABLE devices ADD COLUMN vowifi_allow_sha1 INTEGER NOT NULL DEFAULT 0 CHECK (vowifi_allow_sha1 IN (0, 1))`,
`ALTER TABLE devices ADD COLUMN vowifi_use_modp1024 INTEGER NOT NULL DEFAULT 0 CHECK (vowifi_use_modp1024 IN (0, 1))`,
}
default: default:
return nil return nil
} }
-3
View File
@@ -610,9 +610,6 @@ func mergeJSONSecrets(
func redactJSONValue(value any, replacement string) any { func redactJSONValue(value any, replacement string) any {
switch typed := value.(type) { switch typed := value.(type) {
case string: case string:
if typed == "" {
return ""
}
return replacement return replacement
case []any: case []any:
result := make([]any, len(typed)) result := make([]any, len(typed))
+17 -46
View File
@@ -357,11 +357,23 @@ func upstreamProxy(row rowScanner) (UpstreamProxy, error) {
} }
func (s *Store) UpsertDeviceProxyBinding(ctx context.Context, value DeviceProxyBinding) error { func (s *Store) UpsertDeviceProxyBinding(ctx context.Context, value DeviceProxyBinding) error {
value, err := normalizeDeviceProxyBinding(value) value.DeviceID = strings.TrimSpace(value.DeviceID)
if err != nil { value.ICCID = strings.TrimSpace(value.ICCID)
return err value.ProfileName = strings.TrimSpace(value.ProfileName)
value.UpstreamProxyID = strings.TrimSpace(value.UpstreamProxyID)
if value.DeviceID == "" || value.ICCID == "" || value.UpstreamProxyID == "" {
return errors.New("profile proxy binding requires device ID, ICCID, and upstream proxy ID")
} }
_, err = s.db.ExecContext(ctx, ` now := time.Now().UTC()
createdAt := value.CreatedAt
if createdAt.IsZero() {
createdAt = now
}
updatedAt := value.UpdatedAt
if updatedAt.IsZero() {
updatedAt = now
}
_, err := s.db.ExecContext(ctx, `
INSERT INTO device_proxy_bindings ( INSERT INTO device_proxy_bindings (
iccid, device_id, profile_name, upstream_proxy_id, created_at, updated_at iccid, device_id, profile_name, upstream_proxy_id, created_at, updated_at
) VALUES (?, ?, ?, ?, ?, ?) ) VALUES (?, ?, ?, ?, ?, ?)
@@ -370,54 +382,13 @@ func (s *Store) UpsertDeviceProxyBinding(ctx context.Context, value DeviceProxyB
profile_name = excluded.profile_name, profile_name = excluded.profile_name,
upstream_proxy_id = excluded.upstream_proxy_id, upstream_proxy_id = excluded.upstream_proxy_id,
updated_at = excluded.updated_at updated_at = excluded.updated_at
`, value.ICCID, value.DeviceID, value.ProfileName, value.UpstreamProxyID, value.CreatedAt.Unix(), value.UpdatedAt.Unix()) `, value.ICCID, value.DeviceID, value.ProfileName, value.UpstreamProxyID, createdAt.Unix(), updatedAt.Unix())
if err != nil { if err != nil {
return fmt.Errorf("upsert proxy binding for ICCID %q: %w", value.ICCID, err) return fmt.Errorf("upsert proxy binding for ICCID %q: %w", value.ICCID, err)
} }
return nil return nil
} }
// InsertDeviceProxyBindingIfAbsent materializes a default route without ever
// replacing an explicit (or concurrently-created) ICCID binding.
func (s *Store) InsertDeviceProxyBindingIfAbsent(ctx context.Context, value DeviceProxyBinding) (bool, error) {
value, err := normalizeDeviceProxyBinding(value)
if err != nil {
return false, err
}
result, err := s.db.ExecContext(ctx, `
INSERT INTO device_proxy_bindings (
iccid, device_id, profile_name, upstream_proxy_id, created_at, updated_at
) VALUES (?, ?, ?, ?, ?, ?)
ON CONFLICT(iccid) DO NOTHING
`, value.ICCID, value.DeviceID, value.ProfileName, value.UpstreamProxyID, value.CreatedAt.Unix(), value.UpdatedAt.Unix())
if err != nil {
return false, fmt.Errorf("insert proxy binding for ICCID %q if absent: %w", value.ICCID, err)
}
affected, err := result.RowsAffected()
if err != nil {
return false, fmt.Errorf("read inserted proxy binding result for ICCID %q: %w", value.ICCID, err)
}
return affected > 0, nil
}
func normalizeDeviceProxyBinding(value DeviceProxyBinding) (DeviceProxyBinding, error) {
value.DeviceID = strings.TrimSpace(value.DeviceID)
value.ICCID = strings.TrimSpace(value.ICCID)
value.ProfileName = strings.TrimSpace(value.ProfileName)
value.UpstreamProxyID = strings.TrimSpace(value.UpstreamProxyID)
if value.DeviceID == "" || value.ICCID == "" || value.UpstreamProxyID == "" {
return DeviceProxyBinding{}, errors.New("profile proxy binding requires device ID, ICCID, and upstream proxy ID")
}
now := time.Now().UTC()
if value.CreatedAt.IsZero() {
value.CreatedAt = now
}
if value.UpdatedAt.IsZero() {
value.UpdatedAt = now
}
return value, nil
}
func (s *Store) DeviceProxyBinding(ctx context.Context, iccid string) (DeviceProxyBinding, error) { func (s *Store) DeviceProxyBinding(ctx context.Context, iccid string) (DeviceProxyBinding, error) {
return deviceProxyBinding(s.db.QueryRowContext( return deviceProxyBinding(s.db.QueryRowContext(
ctx, ctx,
-2
View File
@@ -24,8 +24,6 @@ func DefaultNotificationSensitiveFields(channel string) []string {
return []string{"token"} return []string{"token"}
case "wecom": case "wecom":
return []string{"urls"} return []string{"urls"}
case "lark":
return []string{"url", "secret"}
default: default:
return nil return nil
} }
+2 -30
View File
@@ -3,7 +3,6 @@ package store
import ( import (
"encoding/json" "encoding/json"
"fmt" "fmt"
"maps"
"sort" "sort"
"strconv" "strconv"
"strings" "strings"
@@ -95,15 +94,9 @@ func mergeConcatSegment(
} }
} }
} }
// Some IMS stacks hand us a cumulative segment: sequence 2 contains the prior, alreadyHad := parts[sequence]
// already-decoded text of sequence 1 followed by its own payload. Keep a changed = !alreadyHad || prior != segmentBody
// snapshot so normalizing that representation remains idempotent on a later
// redelivery of the same segment.
previousParts := maps.Clone(parts)
normalizeCumulativeConcatParts(previousParts)
parts[sequence] = segmentBody parts[sequence] = segmentBody
normalizeCumulativeConcatParts(parts)
changed = !maps.Equal(previousParts, parts)
sequences := make([]int, 0, len(parts)) sequences := make([]int, 0, len(parts))
for n := range parts { for n := range parts {
@@ -137,24 +130,3 @@ func mergeConcatSegment(
} }
return joined.String(), json.RawMessage(encoded), changed, nil return joined.String(), json.RawMessage(encoded), changed, nil
} }
// normalizeCumulativeConcatParts converts cumulative IMS segment bodies back
// into ordinary per-segment bodies. It only removes an exact, non-empty prefix
// assembled from every preceding sequence starting at 1, and only when the
// current value also contains additional text. That deliberately leaves equal
// repeated segments and incomplete/out-of-order prefixes untouched.
func normalizeCumulativeConcatParts(parts map[int]string) {
var prefix strings.Builder
for sequence := 1; ; sequence++ {
text, ok := parts[sequence]
if !ok {
return
}
assembled := prefix.String()
if assembled != "" && len(text) > len(assembled) && strings.HasPrefix(text, assembled) {
text = strings.TrimPrefix(text, assembled)
parts[sequence] = text
}
prefix.WriteString(text)
}
}
-56
View File
@@ -101,62 +101,6 @@ func TestMergeConcatSegmentRedeliveryIsIdempotent(t *testing.T) {
} }
} }
func TestMergeConcatSegmentNormalizesCumulativeIMSPart(t *testing.T) {
first := strings.Repeat("安全提醒", 17)
want := first + "请通过官方渠道核实。"
_, extra, _, err := mergeConcatSegment(nil, first, concatExtra(t, 8, 2, 1))
if err != nil {
t.Fatal(err)
}
body, normalized, changed, err := mergeConcatSegment(extra, want, concatExtra(t, 8, 2, 2))
if err != nil || !changed {
t.Fatalf("cumulative segment: body=%q changed=%v err=%v", body, changed, err)
}
if body != want {
t.Fatalf("body = %q, want cumulative text once %q", body, want)
}
// Redelivering the cumulative wire representation must compare equal to the
// normalized stored representation and must not churn the durable row id.
body, _, changed, err = mergeConcatSegment(normalized, want, concatExtra(t, 8, 2, 2))
if err != nil {
t.Fatal(err)
}
if changed || body != want {
t.Fatalf("redelivery: body=%q changed=%v, want %q/false", body, changed, want)
}
}
func TestMergeConcatSegmentNormalizesCumulativeIMSPartOutOfOrder(t *testing.T) {
first := strings.Repeat("甲", 67)
want := first + "尾段"
_, extra, _, err := mergeConcatSegment(nil, want, concatExtra(t, 12, 2, 2))
if err != nil {
t.Fatal(err)
}
body, _, changed, err := mergeConcatSegment(extra, first, concatExtra(t, 12, 2, 1))
if err != nil || !changed {
t.Fatalf("out-of-order segment: body=%q changed=%v err=%v", body, changed, err)
}
if body != want {
t.Fatalf("body = %q, want cumulative text once %q", body, want)
}
}
func TestMergeConcatSegmentKeepsEqualRepeatedPart(t *testing.T) {
_, extra, _, err := mergeConcatSegment(nil, "重复", concatExtra(t, 13, 2, 1))
if err != nil {
t.Fatal(err)
}
body, _, _, err := mergeConcatSegment(extra, "重复", concatExtra(t, 13, 2, 2))
if err != nil {
t.Fatal(err)
}
if body != "重复重复" {
t.Fatalf("body = %q, want intentional equal segments preserved", body)
}
}
func TestMergeConcatSegmentWithoutHeaderPassesThrough(t *testing.T) { func TestMergeConcatSegmentWithoutHeaderPassesThrough(t *testing.T) {
extra, err := json.Marshal(map[string]any{"encoding": "gsm7"}) extra, err := json.Marshal(map[string]any{"encoding": "gsm7"})
if err != nil { if err != nil {
-121
View File
@@ -1,121 +0,0 @@
package store
import (
"context"
"encoding/json"
"path/filepath"
"testing"
"time"
)
func TestLongSMSReassemblySurvivesServiceRestart(t *testing.T) {
ctx := context.Background()
path := filepath.Join(t.TempDir(), "vocat.db")
const (
deviceID = "dajiang"
imei = "867394042309830"
peer = "+447700900123"
)
messageID := StableConcatMessageID("ims", imei, deviceID, peer, 27, 2)
database, err := Open(ctx, path)
if err != nil {
t.Fatal(err)
}
mustSaveDevice(t, database, deviceID, "大疆")
first, err := database.SaveSMSMessage(ctx, SMSMessage{
MessageID: messageID, DeviceID: deviceID, ModemIMEI: imei, IMSI: "23433",
Peer: peer, Direction: "inbound", Body: "第一段:安全提醒,",
Timestamp: time.Unix(1_700_000_000, 0).UTC(), Status: "received", Source: "ims",
PartsTotal: 2, Extra: concatExtra(t, 27, 2, 1),
})
if err != nil {
t.Fatal(err)
}
if ConcatSMSReadyToNotify(first.MessageID, first.Extra) {
t.Fatal("partial message must not be ready before restart")
}
if err := database.Close(); err != nil {
t.Fatal(err)
}
database, err = Open(ctx, path)
if err != nil {
t.Fatal(err)
}
defer database.Close()
second, err := database.SaveSMSMessage(ctx, SMSMessage{
MessageID: messageID, DeviceID: deviceID, ModemIMEI: imei, IMSI: "23433",
Peer: peer, Direction: "inbound", Body: "第二段:请通过官方渠道核实。",
Timestamp: time.Unix(1_700_000_030, 0).UTC(), Status: "received", Source: "ims",
PartsTotal: 2, Extra: concatExtra(t, 27, 2, 2),
})
if err != nil {
t.Fatal(err)
}
if second.Body != "第一段:安全提醒,第二段:请通过官方渠道核实。" ||
!ConcatSMSReadyToNotify(second.MessageID, second.Extra) {
t.Fatalf("reassembled message after restart = %#v", second)
}
messages, err := database.ListSMSMessages(ctx, SMSFilter{DeviceID: deviceID})
if err != nil {
t.Fatal(err)
}
if len(messages) != 1 || messages[0].ID != second.ID {
t.Fatalf("stored messages after restart = %#v, want one merged row", messages)
}
redelivered, err := database.SaveSMSMessage(ctx, SMSMessage{
MessageID: messageID, DeviceID: deviceID, ModemIMEI: imei, IMSI: "23433",
Peer: peer, Direction: "inbound", Body: "第二段:请通过官方渠道核实。",
Status: "received", Source: "ims", PartsTotal: 2, Extra: concatExtra(t, 27, 2, 2),
})
if err != nil {
t.Fatal(err)
}
if redelivered.ID != second.ID || redelivered.Body != second.Body {
t.Fatalf("redelivery duplicated or changed message: %#v", redelivered)
}
}
func TestMultipartDeliveryReportsSurviveServiceRestart(t *testing.T) {
ctx := context.Background()
path := filepath.Join(t.TempDir(), "vocat.db")
database, err := Open(ctx, path)
if err != nil {
t.Fatal(err)
}
mustSaveDevice(t, database, "dajiang", "大疆")
extra := json.RawMessage(`{"transport":"ims","part_results":[{"reference":51},{"reference":52}]}`)
sent, err := database.SaveSMSMessage(ctx, SMSMessage{
MessageID: "ims-submit-restart", DeviceID: "dajiang", IMSI: "23433",
Peer: "+447700900123", Direction: "outbound", Body: "multipart",
Status: "accepted_by_ims", Source: "ims", PartsTotal: 2,
DeliveryState: "accepted_by_ims", Read: true, Extra: extra,
})
if err != nil {
t.Fatal(err)
}
if err := database.Close(); err != nil {
t.Fatal(err)
}
database, err = Open(ctx, path)
if err != nil {
t.Fatal(err)
}
defer database.Close()
first, err := database.ApplySMSDeliveryReport(ctx, SMSDeliveryReport{
DeviceID: "dajiang", IMSI: "23433", Peer: "+447700900123", Source: "ims",
MessageReference: 51, StatusCode: 0, DeliveryState: "delivered",
})
if err != nil || first.ID != sent.ID || first.DeliveryState != "pending_delivery_report" {
t.Fatalf("first report after restart = (%#v, %v)", first, err)
}
second, err := database.ApplySMSDeliveryReport(ctx, SMSDeliveryReport{
DeviceID: "dajiang", IMSI: "23433", Peer: "+447700900123", Source: "ims",
MessageReference: 52, StatusCode: 0, DeliveryState: "delivered",
})
if err != nil || second.ID != sent.ID || second.DeliveryState != "delivered" {
t.Fatalf("second report after restart = (%#v, %v)", second, err)
}
}
+2 -3
View File
@@ -13,7 +13,7 @@ import (
_ "modernc.org/sqlite" _ "modernc.org/sqlite"
) )
const schemaVersion = 19 const schemaVersion = 16
var ErrNotFound = errors.New("store: not found") var ErrNotFound = errors.New("store: not found")
@@ -123,8 +123,7 @@ func migrate(ctx context.Context, db *sql.DB) error {
duplicateAdditiveColumn := (nextVersion == 7 && strings.Contains(statement, "ADD COLUMN modem_imei")) || duplicateAdditiveColumn := (nextVersion == 7 && strings.Contains(statement, "ADD COLUMN modem_imei")) ||
(nextVersion == 8 && strings.Contains(statement, "ADD COLUMN device_type")) || (nextVersion == 8 && strings.Contains(statement, "ADD COLUMN device_type")) ||
(nextVersion == 14 && strings.Contains(statement, "ADD COLUMN")) || (nextVersion == 14 && strings.Contains(statement, "ADD COLUMN")) ||
(nextVersion == 16 && strings.Contains(statement, "ADD COLUMN sim_pin")) || (nextVersion == 16 && strings.Contains(statement, "ADD COLUMN sim_pin"))
(nextVersion == 19 && strings.Contains(statement, "ADD COLUMN"))
if duplicateAdditiveColumn && strings.Contains(strings.ToLower(err.Error()), "duplicate column name") { if duplicateAdditiveColumn && strings.Contains(strings.ToLower(err.Error()), "duplicate column name") {
continue continue
} }
-29
View File
@@ -1,12 +1,6 @@
package update package update
import ( import (
"bytes"
"context"
"io"
"log/slog"
"net/http"
"net/http/httptest"
"reflect" "reflect"
"testing" "testing"
) )
@@ -28,26 +22,3 @@ func TestAssetNamesFor(t *testing.T) {
} }
} }
} }
func TestDownloadAssetWithProgressVerifiesPublishedSize(t *testing.T) {
payload := bytes.Repeat([]byte("vocat"), 4096)
server := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, _ *http.Request) {
_, _ = w.Write(payload)
}))
defer server.Close()
logger := slog.New(slog.NewTextHandler(io.Discard, nil))
var destination bytes.Buffer
asset := &Asset{Name: "vocat-test", BrowserDownloadURL: server.URL, Size: int64(len(payload))}
if err := downloadAssetWithProgress(context.Background(), logger, asset, "", &destination); err != nil {
t.Fatal(err)
}
if !bytes.Equal(destination.Bytes(), payload) {
t.Fatal("downloaded asset content differs")
}
asset.Size++
if err := downloadAssetWithProgress(context.Background(), logger, asset, "", io.Discard); err == nil {
t.Fatal("download with a mismatched published size succeeded")
}
}
+2 -22
View File
@@ -2,14 +2,11 @@ package update
import ( import (
"context" "context"
"crypto/tls"
"encoding/json" "encoding/json"
"fmt" "fmt"
"io" "io"
"net"
"net/http" "net/http"
"strings" "strings"
"time"
) )
// Release mirrors the subset of the GitHub releases API response that the // Release mirrors the subset of the GitHub releases API response that the
@@ -43,23 +40,6 @@ const (
DefaultRepository = "MengMengCode/VoCat" DefaultRepository = "MengMengCode/VoCat"
) )
var githubHTTPClient = &http.Client{
Transport: &http.Transport{
Proxy: http.ProxyFromEnvironment,
DialContext: (&net.Dialer{
Timeout: 10 * time.Second,
KeepAlive: 30 * time.Second,
}).DialContext,
ForceAttemptHTTP2: true,
TLSHandshakeTimeout: 15 * time.Second,
ResponseHeaderTimeout: 20 * time.Second,
ExpectContinueTimeout: time.Second,
TLSClientConfig: &tls.Config{
MinVersion: tls.VersionTLS12,
},
},
}
// LatestRelease fetches the newest published release for repo (form // LatestRelease fetches the newest published release for repo (form
// "owner/name"). A non-empty token is sent as a Bearer header, which is // "owner/name"). A non-empty token is sent as a Bearer header, which is
// required for private repositories and lifts the unauthenticated rate limit. // required for private repositories and lifts the unauthenticated rate limit.
@@ -81,7 +61,7 @@ func LatestRelease(ctx context.Context, repo, token string) (*Release, error) {
req.Header.Set("Authorization", "Bearer "+token) req.Header.Set("Authorization", "Bearer "+token)
} }
resp, err := githubHTTPClient.Do(req) resp, err := http.DefaultClient.Do(req)
if err != nil { if err != nil {
return nil, fmt.Errorf("update: fetch latest release: %w", err) return nil, fmt.Errorf("update: fetch latest release: %w", err)
} }
@@ -140,7 +120,7 @@ func downloadAsset(ctx context.Context, url, token string, dst io.Writer) error
if token != "" { if token != "" {
req.Header.Set("Authorization", "Bearer "+token) req.Header.Set("Authorization", "Bearer "+token)
} }
resp, err := githubHTTPClient.Do(req) resp, err := http.DefaultClient.Do(req)
if err != nil { if err != nil {
return fmt.Errorf("update: download asset: %w", err) return fmt.Errorf("update: download asset: %w", err)
} }
-42
View File
@@ -1,42 +0,0 @@
package update
import (
"io"
"log/slog"
"testing"
)
func TestDetectSystemdUnitUsesExplicitOverride(t *testing.T) {
t.Setenv("VOCAT_SYSTEMD_UNIT", "vocat-test.service")
logger := slog.New(slog.NewTextHandler(io.Discard, nil))
if got := detectSystemdUnit(logger); got != "vocat-test.service" {
t.Fatalf("detectSystemdUnit() = %q, want vocat-test.service", got)
}
}
func TestSystemdUnitFromCgroup(t *testing.T) {
tests := []struct {
name string
data string
want string
}{
{name: "cgroup v2", data: "0::/system.slice/vocat-test.service\n", want: "vocat-test.service"},
{name: "legacy", data: "1:name=systemd:/system.slice/[email protected]\n", want: "[email protected]"},
{name: "no service", data: "0::/user.slice/user-1000.slice/session-1.scope\n", want: ""},
}
for _, test := range tests {
t.Run(test.name, func(t *testing.T) {
if got := systemdUnitFromCgroup(test.data); got != test.want {
t.Fatalf("systemdUnitFromCgroup() = %q, want %q", got, test.want)
}
})
}
}
func TestValidSystemdUnitRejectsArgumentsAndPaths(t *testing.T) {
for _, value := range []string{"vocat", "../vocat.service", "vocat.service --now", "vocat.service/other"} {
if validSystemdUnit.MatchString(value) {
t.Fatalf("validSystemdUnit unexpectedly accepted %q", value)
}
}
}
+3 -115
View File
@@ -15,16 +15,12 @@ import (
"bytes" "bytes"
"context" "context"
"fmt" "fmt"
"io"
"log/slog" "log/slog"
"os" "os"
"os/exec" "os/exec"
"path/filepath" "path/filepath"
"regexp"
"runtime" "runtime"
"strconv"
"strings" "strings"
"sync/atomic"
"time" "time"
"vocat/internal/buildinfo" "vocat/internal/buildinfo"
@@ -153,7 +149,7 @@ func applyUpdate(ctx context.Context, logger *slog.Logger, opts Options, release
}() }()
logger.Info("downloading binary", "asset", asset.Name, "size", asset.Size, "url", asset.BrowserDownloadURL) logger.Info("downloading binary", "asset", asset.Name, "size", asset.Size, "url", asset.BrowserDownloadURL)
if err := downloadAssetWithProgress(ctx, logger, asset, opts.Token, tmp); err != nil { if err := downloadAsset(ctx, asset.BrowserDownloadURL, opts.Token, tmp); err != nil {
cleanup() cleanup()
return err return err
} }
@@ -210,68 +206,6 @@ func applyUpdate(ctx context.Context, logger *slog.Logger, opts Options, release
return nil return nil
} }
type downloadProgressWriter struct {
destination io.Writer
downloaded atomic.Int64
}
func (writer *downloadProgressWriter) Write(data []byte) (int, error) {
written, err := writer.destination.Write(data)
writer.downloaded.Add(int64(written))
return written, err
}
func downloadAssetWithProgress(
ctx context.Context,
logger *slog.Logger,
asset *Asset,
token string,
destination io.Writer,
) error {
progress := &downloadProgressWriter{destination: destination}
done := make(chan struct{})
go func() {
ticker := time.NewTicker(5 * time.Second)
defer ticker.Stop()
for {
select {
case <-done:
return
case <-ctx.Done():
return
case <-ticker.C:
downloaded := progress.downloaded.Load()
percent := float64(0)
if asset.Size > 0 {
percent = float64(downloaded) * 100 / float64(asset.Size)
}
logger.Info(
"download progress",
"asset", asset.Name,
"downloaded", downloaded,
"total", asset.Size,
"percent", fmt.Sprintf("%.1f", percent),
)
}
}
}()
err := downloadAsset(ctx, asset.BrowserDownloadURL, token, progress)
close(done)
if err != nil {
return err
}
if asset.Size > 0 && progress.downloaded.Load() != asset.Size {
return fmt.Errorf(
"update: asset size mismatch for %s: downloaded %d bytes, expected %d",
asset.Name,
progress.downloaded.Load(),
asset.Size,
)
}
logger.Info("download completed", "asset", asset.Name, "bytes", progress.downloaded.Load())
return nil
}
// validateExecutable catches incompatible architectures and missing dynamic // validateExecutable catches incompatible architectures and missing dynamic
// loaders before the working installation is touched. A valid checksum alone // loaders before the working installation is touched. A valid checksum alone
// cannot detect those packaging errors. // cannot detect those packaging errors.
@@ -322,63 +256,17 @@ func RestartService(logger *slog.Logger) error {
if _, err := exec.LookPath("systemctl"); err != nil { if _, err := exec.LookPath("systemctl"); err != nil {
return fmt.Errorf("neither /etc/init.d/vocat nor systemctl is available") return fmt.Errorf("neither /etc/init.d/vocat nor systemctl is available")
} }
unit := detectSystemdUnit(logger)
// Queue the restart and let systemctl exit before systemd stops this unit. // Queue the restart and let systemctl exit before systemd stops this unit.
// A blocking restart command becomes part of vocat.service's own cgroup and // A blocking restart command becomes part of vocat.service's own cgroup and
// waits for that same cgroup to terminate, creating a stop-timeout cycle. // waits for that same cgroup to terminate, creating a stop-timeout cycle.
cmd := exec.Command("systemctl", "restart", "--no-block", unit) cmd := exec.Command("systemctl", "restart", "--no-block", "vocat")
if out, err := cmd.CombinedOutput(); err != nil { if out, err := cmd.CombinedOutput(); err != nil {
logger.Warn("systemctl restart failed", "error", err, "output", string(out)) logger.Warn("systemctl restart failed", "error", err, "output", string(out))
return fmt.Errorf("systemctl restart %s: %w", unit, err) return fmt.Errorf("systemctl restart vocat: %w", err)
} }
return nil return nil
} }
var validSystemdUnit = regexp.MustCompile(`^[A-Za-z0-9_.@:-]+\.service$`)
func detectSystemdUnit(logger *slog.Logger) string {
if configured := strings.TrimSpace(os.Getenv("VOCAT_SYSTEMD_UNIT")); validSystemdUnit.MatchString(configured) {
return configured
}
if data, err := os.ReadFile("/proc/self/cgroup"); err == nil {
if unit := systemdUnitFromCgroup(string(data)); unit != "" {
return unit
}
}
// Some cgroup namespaces hide the unit name. Query loaded services and
// identify the unit whose MainPID is this process before falling back.
list := exec.Command("systemctl", "list-units", "--type=service", "--all", "--no-legend", "--plain")
if output, err := list.Output(); err == nil {
pid := strconv.Itoa(os.Getpid())
for _, line := range strings.Split(string(output), "\n") {
fields := strings.Fields(line)
if len(fields) == 0 || !validSystemdUnit.MatchString(fields[0]) {
continue
}
show := exec.Command("systemctl", "show", fields[0], "--property=MainPID", "--value")
if value, showErr := show.Output(); showErr == nil && strings.TrimSpace(string(value)) == pid {
return fields[0]
}
}
}
if logger != nil {
logger.Warn("could not identify the current systemd unit; using vocat.service", "hint", "set VOCAT_SYSTEMD_UNIT for a custom unit")
}
return "vocat.service"
}
func systemdUnitFromCgroup(data string) string {
for _, line := range strings.Split(data, "\n") {
for _, part := range strings.Split(line, "/") {
part = strings.TrimSpace(part)
if validSystemdUnit.MatchString(part) {
return part
}
}
}
return ""
}
// resolveDefaultTarget returns the conventional install path when present, // resolveDefaultTarget returns the conventional install path when present,
// falling back to the running executable. This lets `vocat update` "just work" // falling back to the running executable. This lets `vocat update` "just work"
// on the standard systemd host without flags. // on the standard systemd host without flags.

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