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Jane Alesi 9cb6bfb714 feat(ui): add UIAutomator-based ui subcommand for AI remote control
Add 'fs5 ui' subcommand with 4 operations:
- ui dump [path]      — dump UI hierarchy XML via uiautomator
- ui elements [--json] — list all interactive elements with coords
- ui find <text>      — find element by text/content-desc, return x y
- ui tap <text>       — find element and tap it (ui find + tap)

lib/input.sh:
- adb_ui_dump()     — uiautomator dump → pull XML → cleanup
- adb_ui_find()     — Python XML parse, case-insensitive search
- adb_ui_elements() — full element inventory as JSON

tests/test_ui.bats: 22 new tests (fixture-based, no live device needed)

Total: 85/85 BATS tests passing (was 64/64)

Research findings (AppAgent pattern, ADB+vision):
- UIAutomator dump: best no-root UI inspection on Android 9 SDK 28
- AppAgent (6.6k★): screenshot + GPT-4V + ADB tap/swipe pipeline
- RustDesk InputService already enabled → accessibility layer available
- scrcpy 3.3.4 + tesseract OCR pipeline already working
2026-03-02 18:13:44 +01:00

330 lines
10 KiB
Bash

#!/usr/bin/env bash
# lib/input.sh — ADB input automation and screenshot functions for android-fs5
# shellcheck shell=bash
# adb_screenshot [OUTPUT_PATH] — capture device screen to PNG
# Returns path of saved file
adb_screenshot() {
local output="${1:-/tmp/fs5-screenshot-$(date +%s).png}"
adb_cmd shell screencap -p > "${output}"
echo "${output}"
}
# adb_tap X Y — send tap event at coordinates
adb_tap() {
local x="${1}" y="${2}"
adb_cmd shell input tap "${x}" "${y}"
}
# adb_swipe X1 Y1 X2 Y2 [DURATION_MS] — send swipe gesture
adb_swipe() {
local x1="${1}" y1="${2}" x2="${3}" y2="${4}"
local duration="${5:-300}"
adb_cmd shell input swipe "${x1}" "${y1}" "${x2}" "${y2}" "${duration}"
}
# adb_type TEXT — type text into focused input field
adb_type() {
local text="${1}"
# Escape spaces for adb input text
local escaped="${text// /%s}"
adb_cmd shell input text "${escaped}"
}
# adb_key KEYCODE — send Android key event
# Common: KEYCODE_HOME, KEYCODE_BACK, KEYCODE_POWER, KEYCODE_ENTER
adb_key() {
local keycode="${1}"
adb_cmd shell input keyevent "${keycode}"
}
# adb_launch PACKAGE — launch app by package name
adb_launch() {
local pkg="${1}"
local result exit_code
result=$(adb_cmd shell monkey -p "${pkg}" -c android.intent.category.LAUNCHER 1 2>&1) || exit_code=$?
exit_code="${exit_code:-0}"
if echo "${result}" | grep -q "Events injected: 1"; then
return 0
elif [[ "${exit_code}" -ne 0 ]] || echo "${result}" | grep -q "No activities found\|monkey aborted"; then
out_error "Package not found or has no launcher activity: ${pkg}"
return 1
else
out_error "Failed to launch: ${pkg}"
return 1
fi
}
# adb_ui_dump [OUTPUT_PATH] — dump UI hierarchy via UIAutomator
# Returns local path to the XML file
adb_ui_dump() {
local output="${1:-/tmp/fs5-ui-$(date +%s).xml}"
local device_path="/sdcard/fs5_ui_dump.xml"
# UIAutomator prints permission warnings to stderr but still works
adb_cmd shell uiautomator dump "${device_path}" >/dev/null 2>&1
adb_cmd pull "${device_path}" "${output}" >/dev/null 2>&1
adb_cmd shell rm -f "${device_path}" >/dev/null 2>&1
echo "${output}"
}
# adb_ui_find TEXT [XML_PATH] — find UI element by text/content-desc, return bounds center
# Returns "x y" coordinates of element center, or empty if not found
adb_ui_find() {
local search_text="${1}"
local xml_path="${2:-}"
if [[ -z "${xml_path}" ]]; then
xml_path=$(adb_ui_dump)
fi
python3 - "${xml_path}" "${search_text}" <<'PYEOF'
import sys, xml.etree.ElementTree as ET, re
xml_path = sys.argv[1]
search = sys.argv[2].lower()
try:
tree = ET.parse(xml_path)
except Exception as e:
sys.exit(1)
root = tree.getroot()
for node in root.iter('node'):
text = node.get('text', '').lower()
desc = node.get('content-desc', '').lower()
rid = node.get('resource-id', '').lower()
if search in text or search in desc or search in rid:
bounds = node.get('bounds', '')
# Parse [x1,y1][x2,y2]
m = re.findall(r'\d+', bounds)
if len(m) == 4:
cx = (int(m[0]) + int(m[2])) // 2
cy = (int(m[1]) + int(m[3])) // 2
print(f"{cx} {cy}")
sys.exit(0)
sys.exit(1)
PYEOF
}
# adb_ui_elements [XML_PATH] — list all interactive UI elements with bounds
# Returns JSON array of {text, resource_id, class, bounds, clickable, center_x, center_y}
adb_ui_elements() {
local xml_path="${1:-}"
if [[ -z "${xml_path}" ]]; then
xml_path=$(adb_ui_dump)
fi
python3 - "${xml_path}" <<'PYEOF'
import sys, xml.etree.ElementTree as ET, re, json
xml_path = sys.argv[1]
try:
tree = ET.parse(xml_path)
except Exception as e:
print(json.dumps([]))
sys.exit(0)
root = tree.getroot()
elements = []
for node in root.iter('node'):
text = node.get('text', '')
desc = node.get('content-desc', '')
rid = node.get('resource-id', '')
cls = node.get('class', '')
bounds = node.get('bounds', '')
clickable = node.get('clickable', 'false') == 'true'
enabled = node.get('enabled', 'false') == 'true'
# Include clickable elements or elements with text/desc
if not (clickable or text or desc):
continue
cx, cy = None, None
m = re.findall(r'\d+', bounds)
if len(m) == 4:
cx = (int(m[0]) + int(m[2])) // 2
cy = (int(m[1]) + int(m[3])) // 2
elements.append({
'text': text,
'content_desc': desc,
'resource_id': rid,
'class': cls.split('.')[-1], # short class name
'bounds': bounds,
'clickable': clickable,
'enabled': enabled,
'center_x': cx,
'center_y': cy,
})
print(json.dumps(elements, indent=2))
PYEOF
}
# adb_ocr [SCREENSHOT_PATH] — screenshot + OCR, return extracted text
adb_ocr() {
local screenshot
screenshot=$(adb_screenshot)
if ! command -v tesseract &>/dev/null; then
out_error "tesseract not found. Install: sudo pacman -S tesseract tesseract-data-eng"
return 1
fi
# Locate tessdata — try common paths
local tessdata=""
for d in /usr/share/tessdata /usr/share/tesseract-ocr/4.00/tessdata \
/usr/share/tesseract-ocr/tessdata /usr/local/share/tessdata; do
if [[ -f "${d}/eng.traineddata" ]]; then
tessdata="${d}"
break
fi
done
if [[ -z "${tessdata}" ]]; then
out_error "tesseract eng language data not found. Install: sudo pacman -S tesseract-data-eng"
return 1
fi
local txt_base="${screenshot%.png}"
TESSDATA_PREFIX="${tessdata}" tesseract "${screenshot}" "${txt_base}" -l eng --psm 6 quiet 2>/dev/null
if [[ -f "${txt_base}.txt" ]]; then
cat "${txt_base}.txt"
rm -f "${txt_base}.txt"
fi
rm -f "${screenshot}"
}
# _kdeconnect_device_id — find the paired+reachable FS5 device ID via kdeconnect-cli
# Returns device ID or empty string if not paired/reachable
_kdeconnect_device_id() {
# --list-available returns only paired AND reachable devices
kdeconnect-cli --list-available --id-only 2>/dev/null | head -1 | tr -d '\r\n'
}
# _kdeconnect_check — verify KDE Connect is paired; print setup instructions if not
_kdeconnect_check() {
local dev_id
dev_id=$(_kdeconnect_device_id)
if [[ -z "${dev_id}" ]]; then
out_error "KDE Connect: no paired device found."
echo "Setup steps:"
echo " 1. Install KDE Connect on Linux: sudo pacman -S kdeconnect"
echo " 2. Open KDE Connect app on the FS5 phone"
echo " 3. Accept the pairing request on both devices"
echo " 4. Grant SMS permission in KDE Connect app on phone"
echo " 5. Re-run this command"
return 1
fi
echo "${dev_id}"
}
# adb_sms_list [LIMIT] — list SMS conversations via KDE Connect DBus
# Returns JSON array of {id, message_count} (KDE Connect 21+ only provides metadata via DBus)
# Full message content requires KDE Connect app on phone; OTPs use notifications plugin
# Requires: KDE Connect paired + SMS plugin + SMS permission granted on phone
adb_sms_list() {
local limit="${1:-10}"
local dev_id
dev_id=$(_kdeconnect_check) || return 1
local dev_path="/modules/kdeconnect/devices/${dev_id}"
local sms_path="${dev_path}/sms"
# KDE Connect 21+ DBus SMS API:
# requestAllConversations → fires conversationLoaded(int64 id, uint64 count) signals
# Message body content is NOT exposed via DBus in KDE Connect 25.x
# Use select() for non-blocking reads to avoid hanging
python3 /dev/stdin "${dev_id}" "${limit}" <<'PYEOF'
import sys, json, subprocess, time, re, select
dev_id = sys.argv[1]
limit = int(sys.argv[2])
sms_path = f"/modules/kdeconnect/devices/{dev_id}/sms"
# Start monitoring
proc = subprocess.Popen(
["dbus-monitor", "--session", "sender='org.kde.kdeconnect'"],
stdout=subprocess.PIPE, stderr=subprocess.DEVNULL, text=True
)
time.sleep(0.3)
# Request all conversations
subprocess.run(
["gdbus", "call", "--session", "--dest", "org.kde.kdeconnect",
"--object-path", sms_path,
"--method", "org.kde.kdeconnect.device.sms.requestAllConversations"],
capture_output=True, text=True)
conv_list = []
deadline = time.time() + 6
last_signal = time.time()
while time.time() < deadline:
ready = select.select([proc.stdout], [], [], 0.5)
if not ready[0]:
if conv_list and (time.time() - last_signal) > 1.5:
break
continue
line = proc.stdout.readline()
if "member=conversationLoaded" in line:
last_signal = time.time()
id_line = proc.stdout.readline()
count_line = proc.stdout.readline()
m_id = re.search(r'int64\s+(\d+)', id_line)
m_cnt = re.search(r'uint64\s+(\d+)', count_line)
if m_id:
conv_list.append({
"id": int(m_id.group(1)),
"message_count": int(m_cnt.group(1)) if m_cnt else 0
})
if len(conv_list) >= limit:
break
proc.terminate()
print(json.dumps(conv_list[:limit], indent=2))
PYEOF
}
# adb_sms_otp [WAIT_SECS] — extract OTP code from KDE Connect notifications
# Watches for SMS/messaging app notifications containing 4-8 digit codes
# If WAIT_SECS > 0, polls until new OTP arrives or timeout
adb_sms_otp() {
local wait_secs="${1:-0}"
local dev_id
dev_id=$(_kdeconnect_check) || return 1
local deadline=$(( $(date +%s) + wait_secs ))
local notif_base="/modules/kdeconnect/devices/${dev_id}/notifications"
# Poll KDE Connect notifications DBus for OTP patterns
while true; do
local otp
# Get active notification IDs
local notif_ids
notif_ids=$(gdbus call --session --dest org.kde.kdeconnect \
--object-path "${notif_base}" \
--method org.kde.kdeconnect.device.notifications.activeNotifications \
2>/dev/null | grep -oE "'[^']+'" | tr -d "'" | tr ',' '\n' | tr -d ' []')
for nid in ${notif_ids}; do
local props
props=$(gdbus call --session --dest org.kde.kdeconnect \
--object-path "${notif_base}/${nid}" \
--method org.freedesktop.DBus.Properties.GetAll \
"org.kde.kdeconnect.device.notifications.notification" 2>/dev/null)
# Extract OTP from text/ticker fields
otp=$(echo "${props}" | grep -oE '\b[0-9]{4,8}\b' | head -1)
if [[ -n "${otp}" ]]; then
echo "${otp}"
return 0
fi
done
if [[ "${wait_secs}" -le 0 ]] || [[ $(date +%s) -ge ${deadline} ]]; then
break
fi
sleep 3
done
out_error "No OTP found in KDE Connect notifications"
return 1
}