9-task TDD plan: humanize module, Driver.long_press/swipe_path/double_tap on WDA+Android (+ all Fake subclasses), tool wrappers, tap/swipe hooks, and planner integration. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
46 KiB
原子手势 + 拟人化抖动 Implementation Plan
For agentic workers: REQUIRED SUB-SKILL: Use superpowers:subagent-driven-development (recommended) or superpowers:executing-plans to implement this plan task-by-task. Steps use checkbox (
- [ ]) syntax for tracking.
Goal: 为 Runtime 新增 long_press / double_tap 两个原子手势,并引入一个集中的拟人化层,对所有指针动作注入坐标抖动、曲线滑动、时序抖动(APEX_HUMANIZE_ENABLED 默认开)。
Architecture: 纯数学集中在 tools/humanize.py;W3C Actions 序列化集中在 driver/_w3c_actions.py;driver 仍是薄适配器,只把点序列/单点命令翻译成 Appium 调用;工具层(tools/*.py)在调 driver 前套一层 humanize。swipe 在 humanize 开时走 Driver.swipe_path(多点 W3C),关时走原 Driver.swipe(2 点命令,零回归)。
Tech Stack: Python 3.13+、appium-python-client(W3C Actions / mobile commands)、pytest。
Global Constraints
APEX_HUMANIZE_ENABLED默认true;env 前缀统一APEX_HUMANIZE_*。humanize 关闭时tap/swipe必须走与今天完全相同的 driver 方法,现有精确坐标断言零改动。- Driver ABC 新增抽象方法后,所有
Driver子类必须同步实现,否则无法实例化。全仓库子类清单(每个 driver 任务都要改全):driver/wda_driver.py::WDADriverdriver/android_driver.py::AndroidDrivertests/fakes.py::FakeDrivertests/test_describe_screen.py::TreeFailingDriverapps/device-host-agent/tests/test_execution.py::FakeDriverapps/device-host-agent/tests/test_e2e.py::FakeDriver
- mobile 命令名(
mobile: touchAndHold/mobile: longClickGesture/ W3Cpause)实现期对照已安装的 appium-python-client 源码核实,不得凭记忆。真机执行无法在本机完成,仅做源码核实 + mock 单测。 - 所有新文件首行
from __future__ import annotations,遵循仓库既有风格。 - 验证命令:
uv run --all-packages pytest -m "not integration" -q;lint:uv run --with ruff ruff check <paths>(本机无独立 ruff)。
File Structure
| 文件 | 职责 | 任务 |
|---|---|---|
tools/humanize.py(新) |
拟人化纯函数 + config(env) | Task 1 |
tests/test_humanize.py(新) |
humanize 单测 | Task 1 |
driver/base.py(改) |
Driver ABC:+long_press/+swipe_path/+double_tap 抽象方法 |
Task 2/3/4 |
driver/_w3c_actions.py(新) |
W3C Actions payload 构造 + 发送 seam | Task 3 |
driver/wda_driver.py(改) |
WDA 实现 3 个新方法 | Task 2/3/4 |
driver/android_driver.py(改) |
Android 实现 3 个新方法 | Task 2/3/4 |
tests/fakes.py(改) |
FakeDriver 补 3 方法 | Task 2/3/4 |
tests/test_describe_screen.py(改) |
TreeFailingDriver 补 3 方法 | Task 2/3/4 |
apps/device-host-agent/tests/test_execution.py(改) |
FakeDriver 补 3 方法 | Task 2/3/4 |
apps/device-host-agent/tests/test_e2e.py(改) |
FakeDriver 补 3 方法 | Task 2/3/4 |
tests/test_android_driver.py(改) |
命令 shape + 预连接守卫 + 错误包装 | Task 2/3/4 |
tests/test_w3c_actions.py(新) |
W3C payload 纯函数单测 | Task 3 |
tools/long_press.py(新) |
long_press 工具 | Task 5 |
tools/double_tap.py(新) |
double_tap 工具 | Task 6 |
tools/tap.py(改) |
加 humanize 钩子 | Task 7 |
tools/swipe.py(改) |
加 humanize 钩子(开→swipe_path) | Task 8 |
tests/conftest.py(改/新) |
autouse fixture:测试默认关 humanize | Task 7 |
runtime/tool_specs.py(改) |
+LONG_PRESS_SPEC/+DOUBLE_TAP_SPEC | Task 9 |
runtime/executor.py(改) |
registry 注册 2 个新工具 | Task 9 |
runtime/planner_prompts.py(改) |
prompt 工具枚举补 2 个 | Task 9 |
依赖顺序:1 → (2,3,4 独立,但 4 依赖 3 的 helper) → 5 依赖 1+2;6 依赖 1+4;7 依赖 1;8 依赖 1+3;9 依赖 5+6。
Task 1: tools/humanize.py 拟人化模块
Files:
- Create:
tools/humanize.py - Test:
tests/test_humanize.py
Interfaces:
-
Produces:
HumanizeConfig、load_humanize_config(env=None) -> HumanizeConfig、get_rng() -> random.Random、set_rng(rng|None) -> None、jitter_point(x, y, *, radius, rng) -> tuple[float,float]、jitter_duration(value_ms, *, spread, rng) -> int、swipe_waypoints(start, end, *, curvature, n, rng) -> list[tuple[float,float]] -
Step 1: 写失败测试
tests/test_humanize.py
from __future__ import annotations
import math
import random
import pytest
from tools.humanize import (
HumanizeConfig,
jitter_duration,
jitter_point,
load_humanize_config,
set_rng,
swipe_waypoints,
)
def test_jitter_point_stays_within_radius():
rng = random.Random(42)
for _ in range(500):
x, y = jitter_point(100, 200, radius=5.0, rng=rng)
assert math.hypot(x - 100, y - 200) <= 5.0
def test_jitter_point_centered_on_input():
rng = random.Random(0)
xs = [jitter_point(0, 0, radius=4.0, rng=rng)[0] for _ in range(4000)]
assert abs(sum(xs) / len(xs)) < 0.3
def test_jitter_duration_within_spread():
rng = random.Random(3)
for _ in range(200):
v = jitter_duration(1000, spread=0.15, rng=rng)
assert 850 <= v <= 1150
def test_jitter_duration_never_zero():
rng = random.Random(9)
for _ in range(100):
assert jitter_duration(1, spread=0.5, rng=rng) >= 1
def test_swipe_waypoints_endpoints_exact_interior_offset():
rng = random.Random(7)
pts = swipe_waypoints((0, 0), (100, 0), curvature=0.2, n=4, rng=rng)
assert pts[0] == (0, 0)
assert pts[-1] == (100, 0)
assert len(pts) == 6 # start + 4 interior + end
assert any(abs(p[1]) > 1e-6 for p in pts[1:-1])
def test_swipe_waypoints_degenerate_short_path_returns_two_points():
rng = random.Random(1)
pts = swipe_waypoints((5, 5), (5, 5), curvature=0.2, n=8, rng=rng)
assert pts == [(5, 5), (5, 5)]
def test_load_config_defaults_when_unset():
cfg = load_humanize_config(env={})
assert cfg == HumanizeConfig()
def test_load_config_disabled():
cfg = load_humanize_config(env={"APEX_HUMANIZE_ENABLED": "false"})
assert cfg.enabled is False
def test_load_config_overrides():
cfg = load_humanize_config(
env={
"APEX_HUMANIZE_TAP_RADIUS_PX": "9",
"APEX_HUMANIZE_SWIPE_CURVATURE": "0.3",
"APEX_HUMANIZE_SWIPE_WAYPOINTS": "12",
"APEX_HUMANIZE_DURATION_SPREAD": "0.2",
}
)
assert cfg.tap_radius_px == 9.0
assert cfg.swipe_curvature == 0.3
assert cfg.swipe_waypoints == 12
assert cfg.duration_spread == 0.2
def test_set_rng_makes_output_reproducible():
set_rng(random.Random(99))
a = jitter_point(0, 0, radius=5.0, rng=random.Random(99))
set_rng(None) # reset to default rng
assert isinstance(a, tuple) and len(a) == 2
- Step 2: 运行测试确认失败
Run: uv run --all-packages pytest tests/test_humanize.py -q
Expected: FAIL — ModuleNotFoundError: No module named 'tools.humanize'
- Step 3: 写实现
tools/humanize.py
from __future__ import annotations
import math
import os
import random
from collections.abc import Mapping
from dataclasses import dataclass
ENABLED_ENV = "APEX_HUMANIZE_ENABLED"
TAP_RADIUS_ENV = "APEX_HUMANIZE_TAP_RADIUS_PX"
SWIPE_CURVATURE_ENV = "APEX_HUMANIZE_SWIPE_CURVATURE"
SWIPE_WAYPOINTS_ENV = "APEX_HUMANIZE_SWIPE_WAYPOINTS"
DURATION_SPREAD_ENV = "APEX_HUMANIZE_DURATION_SPREAD"
DEFAULT_TAP_RADIUS_PX = 5.0
DEFAULT_SWIPE_CURVATURE = 0.15
DEFAULT_SWIPE_WAYPOINTS = 8
DEFAULT_DURATION_SPREAD = 0.15
@dataclass(frozen=True)
class HumanizeConfig:
enabled: bool = True
tap_radius_px: float = DEFAULT_TAP_RADIUS_PX
swipe_curvature: float = DEFAULT_SWIPE_CURVATURE
swipe_waypoints: int = DEFAULT_SWIPE_WAYPOINTS
duration_spread: float = DEFAULT_DURATION_SPREAD
def load_humanize_config(env: Mapping[str, str] | None = None) -> HumanizeConfig:
values = env or os.environ
return HumanizeConfig(
enabled=_parse_bool(values.get(ENABLED_ENV), default=True),
tap_radius_px=_parse_float(values.get(TAP_RADIUS_ENV), DEFAULT_TAP_RADIUS_PX),
swipe_curvature=_parse_float(
values.get(SWIPE_CURVATURE_ENV), DEFAULT_SWIPE_CURVATURE
),
swipe_waypoints=_parse_int(
values.get(SWIPE_WAYPOINTS_ENV), DEFAULT_SWIPE_WAYPOINTS
),
duration_spread=_parse_float(
values.get(DURATION_SPREAD_ENV), DEFAULT_DURATION_SPREAD
),
)
def _parse_bool(value: str | None, *, default: bool) -> bool:
if value is None:
return default
return value.strip().lower() in {"1", "true", "yes", "on", "enabled"}
def _parse_float(value: str | None, default: float) -> float:
if value is None:
return default
try:
return float(value)
except ValueError:
return default
def _parse_int(value: str | None, default: int) -> int:
if value is None:
return default
try:
return int(value)
except ValueError:
return default
_rng: random.Random | None = None
def get_rng() -> random.Random:
global _rng
if _rng is None:
_rng = random.Random()
return _rng
def set_rng(rng: random.Random | None) -> None:
"""Inject a seeded rng (tests). Pass ``None`` to reset to the default."""
global _rng
_rng = rng
def jitter_point(
x: float, y: float, *, radius: float, rng: random.Random
) -> tuple[float, float]:
"""Gaussian offset clamped to ``[-radius, radius]`` so the tap never leaves
a ``radius``-px box around the target (keeps it inside the button)."""
dx = max(-radius, min(radius, rng.gauss(0.0, radius / 2.0)))
dy = max(-radius, min(radius, rng.gauss(0.0, radius / 2.0)))
return (x + dx, y + dy)
def jitter_duration(
value_ms: int, *, spread: float, rng: random.Random
) -> int:
"""Uniform jitter within ``value_ms * spread``; floored at 1ms."""
delta = value_ms * spread
return max(1, int(value_ms + rng.uniform(-delta, delta)))
def swipe_waypoints(
start: tuple[float, float],
end: tuple[float, float],
*,
curvature: float,
n: int,
rng: random.Random,
) -> list[tuple[float, float]]:
"""Return start + ``n`` interior + end points. Interior points deviate
perpendicular to the path by gaussian noise scaled to ``curvature *
path_length``. Degenerate (zero-length) path returns ``[start, end]``."""
sx, sy = start
ex, ey = end
dx = ex - sx
dy = ey - sy
length = math.hypot(dx, dy)
if length < 1e-6 or n <= 0:
return [start, end]
ux, uy = dx / length, dy / length
px, py = -uy, ux # perpendicular unit vector
amplitude = length * curvature
points: list[tuple[float, float]] = [start]
for i in range(1, n + 1):
t = i / (n + 1)
bx = sx + dx * t
by = sy + dy * t
offset = rng.gauss(0.0, amplitude / 2.0)
points.append((bx + px * offset, by + py * offset))
points.append(end)
return points
- Step 4: 运行测试确认通过
Run: uv run --all-packages pytest tests/test_humanize.py -q
Expected: PASS (10 passed)
- Step 5: 提交
git add tools/humanize.py tests/test_humanize.py
git commit -m "feat(humanize): add coordinate/duration/swipe-path jitter module"
Task 2: Driver.long_press(抽象 + WDA + Android + 全部 Fake)
Files:
- Modify:
driver/base.py(新增抽象方法) - Modify:
driver/wda_driver.py - Modify:
driver/android_driver.py - Modify:
tests/fakes.py、tests/test_describe_screen.py、apps/device-host-agent/tests/test_execution.py、apps/device-host-agent/tests/test_e2e.py - Test:
tests/test_android_driver.py
Interfaces:
-
Produces:
Driver.long_press(self, x: float, y: float, duration_ms: int = 1200) -> None(抽象,所有子类必须实现) -
WDA 命令:
mobile: touchAndHold{"x", "y", "duration"}(duration 秒,float) -
Android 命令:
mobile: longClickGesture{"x", "y"}(系统固定时长,duration_ms被忽略) -
Step 1: 核实命令名(源码,不猜测)
Run: uv run python -c "import appium, os; print(os.path.dirname(appium.__file__))" 定位 appium 安装目录,然后在该目录下 grep -rn "touchAndHold\|longClickGesture" <appium_dir> 确认两个命令的参数键。把核实到的精确参数键填入下面的实现(默认按 spec:WDA {x,y,duration},Android {x,y})。若 appium 未安装导致无法核实,在 commit message 与代码注释里标 # verify on real Appium。
- Step 2: 写失败测试(追加到
tests/test_android_driver.py)
def test_long_press_uses_long_click_gesture() -> None:
driver = _connected_driver()
driver.long_press(30, 40, duration_ms=1500)
driver._client.execute_script.assert_called_once_with(
"mobile: longClickGesture", {"x": 30, "y": 40}
)
def test_long_press_wraps_exception_into_driver_error() -> None:
driver = _connected_driver()
driver._client.execute_script.side_effect = RuntimeError("boom")
with pytest.raises(DriverError):
driver.long_press(1, 2)
并把 test_operation_before_connect_raises_device_offline 的 parametrize 列表追加:
("long_press", {"x": 1, "y": 2}),
- Step 3: 运行确认失败
Run: uv run --all-packages pytest tests/test_android_driver.py -q
Expected: FAIL — AttributeError: 'AndroidDriver' object has no attribute 'long_press'
- Step 4: 加抽象方法(
driver/base.py,接在tap之后)
@abstractmethod
def long_press(self, x: float, y: float, duration_ms: int = 1200) -> None:
"""Press and hold at the given coordinates for ``duration_ms``.
Some platforms ignore ``duration_ms`` (fixed system hold duration).
"""
- Step 5: WDA 实现(
driver/wda_driver.py,接在tap之后)
def long_press(self, x: float, y: float, duration_ms: int = 1200) -> None:
client = self._require_client()
try:
client.execute_script(
"mobile: touchAndHold",
{"x": x, "y": y, "duration": duration_ms / 1000},
)
except Exception as exc:
raise DriverError("long press failed") from exc
- Step 6: Android 实现(
driver/android_driver.py,接在tap之后)
def long_press(self, x: float, y: float, duration_ms: int = 1200) -> None:
# Android ``longClickGesture`` uses a system-fixed hold duration; the
# caller's ``duration_ms`` is intentionally ignored (see design R2).
client = self._require_client()
try:
client.execute_script("mobile: longClickGesture", {"x": x, "y": y})
except Exception as exc:
raise DriverError("long press failed") from exc
- Step 7: 同步全部 Fake/Stub 子类
tests/fakes.py::FakeDriver(在 tap 之后加,记录调用):
def long_press(self, x: float, y: float, duration_ms: int = 1200) -> None:
self.calls.append(("long_press", (x, y, duration_ms)))
其余三处(tests/test_describe_screen.py::TreeFailingDriver、apps/device-host-agent/tests/test_execution.py::FakeDriver、apps/device-host-agent/tests/test_e2e.py::FakeDriver)各加一个 no-op:
def long_press(self, x: float, y: float, duration_ms: int = 1200) -> None:
return None
- Step 8: 运行确认通过
Run: uv run --all-packages pytest tests/test_android_driver.py tests/test_describe_screen.py apps/device-host-agent/tests/test_execution.py apps/device-host-agent/tests/test_e2e.py -q
Expected: PASS(含预连接守卫 parametrize 新增项)
- Step 9: 提交
git add driver/base.py driver/wda_driver.py driver/android_driver.py tests/fakes.py tests/test_describe_screen.py tests/test_android_driver.py apps/device-host-agent/tests/test_execution.py apps/device-host-agent/tests/test_e2e.py
git commit -m "feat(driver): add Driver.long_press on WDA and Android"
Task 3: W3C Actions helper + Driver.swipe_path
Files:
- Create:
driver/_w3c_actions.py - Modify:
driver/base.py、driver/wda_driver.py、driver/android_driver.py、4 个 Fake/Stub、tests/test_android_driver.py - Test:
tests/test_w3c_actions.py(新)
Interfaces:
-
Produces:
driver/_w3c_actions.py的build_swipe_actions(waypoints, total_duration_ms) -> list[dict]、build_double_tap_actions(x, y, interval_ms) -> list[dict]、perform_actions(client, actions) -> None;Driver.swipe_path(self, waypoints: list[tuple[float,float]], duration_ms: int) -> None(抽象) -
Step 1: 写失败测试
tests/test_w3c_actions.py
from __future__ import annotations
import pytest
from driver._w3c_actions import (
build_double_tap_actions,
build_swipe_actions,
)
def test_build_swipe_actions_shape_and_duration_split():
actions = build_swipe_actions([(0, 0), (50, 10), (100, 0)], 600)
assert len(actions) == 1
pointer = actions[0]
assert pointer["type"] == "pointer"
assert pointer["id"] == "finger1"
assert pointer["parameters"]["pointerType"] == "touch"
seq = pointer["actions"]
types = [a["type"] for a in seq]
assert types == [
"pointerMove",
"pointerDown",
"pointerMove",
"pointerMove",
"pointerUp",
]
# 600ms over 2 segments => 300ms per move after pointerDown
moves_after_down = [a for a in seq if a["type"] == "pointerMove"][1:]
assert all(m["duration"] == 300 for m in moves_after_down)
assert seq[0]["x"] == 0 and seq[0]["y"] == 0
assert seq[-1]["x"] == 100 and seq[-1]["y"] == 0
def test_build_swipe_actions_requires_two_waypoints():
with pytest.raises(ValueError):
build_swipe_actions([(1, 1)], 100)
def test_build_double_tap_actions_shape():
actions = build_double_tap_actions(10, 20, interval_ms=80)
seq = actions[0]["actions"]
types = [a["type"] for a in seq]
assert types == [
"pointerMove",
"pointerDown",
"pointerUp",
"pause",
"pointerDown",
"pointerUp",
]
pause = next(a for a in seq if a["type"] == "pause")
assert pause["duration"] == 80
assert seq[0]["x"] == 10 and seq[0]["y"] == 20
- Step 2: 运行确认失败
Run: uv run --all-packages pytest tests/test_w3c_actions.py -q
Expected: FAIL — ModuleNotFoundError: No module named 'driver._w3c_actions'
- Step 3: 写实现
driver/_w3c_actions.py
from __future__ import annotations
from typing import Any
POINTER_ID = "finger1"
def _pointer(*actions: dict[str, Any]) -> list[dict[str, Any]]:
return [
{
"type": "pointer",
"id": POINTER_ID,
"parameters": {"pointerType": "touch"},
"actions": list(actions),
}
]
def build_swipe_actions(
waypoints: list[tuple[float, float]], total_duration_ms: int
) -> list[dict[str, Any]]:
"""W3C actions moving through ``waypoints`` in one continuous touch."""
if len(waypoints) < 2:
raise ValueError("swipe path requires at least two waypoints")
segments = len(waypoints) - 1
per_segment = max(1, total_duration_ms // segments)
sx, sy = waypoints[0]
actions: list[dict[str, Any]] = [
{"type": "pointerMove", "duration": 0, "x": int(sx), "y": int(sy)},
{"type": "pointerDown", "button": 0},
]
for point in waypoints[1:]:
actions.append(
{
"type": "pointerMove",
"duration": per_segment,
"x": int(point[0]),
"y": int(point[1]),
}
)
actions.append({"type": "pointerUp", "button": 0})
return _pointer(*actions)
def build_double_tap_actions(
x: float, y: float, interval_ms: int
) -> list[dict[str, Any]]:
actions = [
{"type": "pointerMove", "duration": 0, "x": int(x), "y": int(y)},
{"type": "pointerDown", "button": 0},
{"type": "pointerUp", "button": 0},
{"type": "pause", "duration": max(1, interval_ms)},
{"type": "pointerDown", "button": 0},
{"type": "pointerUp", "button": 0},
]
return _pointer(*actions)
def perform_actions(client: Any, actions: list[dict[str, Any]]) -> None:
"""Send a W3C actions payload via the Appium/Selenium command seam.
Import is lazy so the pure payload builders stay importable without
selenium on the path (used by unit tests).
"""
from selenium.webdriver.remote.command import Command
client.execute(Command.W3C_ACTIONS, {"actions": actions})
- Step 4: 运行确认通过
Run: uv run --all-packages pytest tests/test_w3c_actions.py -q
Expected: PASS (3 passed)
- Step 5: 写 swipe_path 失败测试(追加到
tests/test_android_driver.py)
def test_swipe_path_sends_w3c_actions() -> None:
from driver._w3c_actions import build_swipe_actions
driver = _connected_driver()
waypoints = [(0, 0), (50, 5), (100, 0)]
driver.swipe_path(waypoints, 600)
args = driver._client.execute.call_args.args
assert args[1] == {"actions": build_swipe_actions(waypoints, 600)}
def test_swipe_path_wraps_exception_into_driver_error() -> None:
driver = _connected_driver()
driver._client.execute.side_effect = RuntimeError("boom")
with pytest.raises(DriverError):
driver.swipe_path([(0, 0), (1, 1)], 100)
并把 test_operation_before_connect_raises_device_offline 的 parametrize 追加:
("swipe_path", {"waypoints": [(0, 0), (1, 1)], "duration_ms": 100}),
- Step 6: 运行确认失败
Run: uv run --all-packages pytest tests/test_android_driver.py -q
Expected: FAIL — AttributeError: 'AndroidDriver' object has no attribute 'swipe_path'
- Step 7: 加抽象方法(
driver/base.py,接在swipe之后)
@abstractmethod
def swipe_path(
self, waypoints: list[tuple[float, float]], duration_ms: int
) -> None:
"""Swipe through a sequence of waypoints in one continuous touch."""
- Step 8: WDA + Android 实现(两处相同,各接在
swipe之后)
def swipe_path(
self, waypoints: list[tuple[float, float]], duration_ms: int
) -> None:
from driver._w3c_actions import build_swipe_actions, perform_actions
client = self._require_client()
try:
perform_actions(client, build_swipe_actions(waypoints, duration_ms))
except Exception as exc:
raise DriverError("swipe_path failed") from exc
- Step 9: 同步全部 Fake/Stub 子类
tests/fakes.py::FakeDriver:
def swipe_path(
self, waypoints: list[tuple[float, float]], duration_ms: int
) -> None:
self.calls.append(("swipe_path", (tuple(waypoints), duration_ms)))
其余三处各加 no-op:
def swipe_path(
self, waypoints: list[tuple[float, float]], duration_ms: int
) -> None:
return None
- Step 10: 运行确认通过
Run: uv run --all-packages pytest tests/test_w3c_actions.py tests/test_android_driver.py tests/test_describe_screen.py apps/device-host-agent/tests/test_execution.py apps/device-host-agent/tests/test_e2e.py -q
Expected: PASS
- Step 11: 提交
git add driver/_w3c_actions.py driver/base.py driver/wda_driver.py driver/android_driver.py tests/test_w3c_actions.py tests/test_android_driver.py tests/fakes.py tests/test_describe_screen.py apps/device-host-agent/tests/test_execution.py apps/device-host-agent/tests/test_e2e.py
git commit -m "feat(driver): add W3C actions helper and Driver.swipe_path"
Task 4: Driver.double_tap(用 Task 3 的 helper)
Files:
- Modify:
driver/base.py、driver/wda_driver.py、driver/android_driver.py、4 个 Fake/Stub、tests/test_android_driver.py
Interfaces:
-
Produces:
Driver.double_tap(self, x: float, y: float, interval_ms: int = 80) -> None(抽象)。两平台都用 W3C Actions(pointerDown→up→pause(interval)→down→up),单次往返。 -
Step 1: 写失败测试(追加到
tests/test_android_driver.py)
def test_double_tap_sends_w3c_actions() -> None:
from driver._w3c_actions import build_double_tap_actions
driver = _connected_driver()
driver.double_tap(15, 25, interval_ms=90)
args = driver._client.execute.call_args.args
assert args[1] == {"actions": build_double_tap_actions(15, 25, 90)}
def test_double_tap_wraps_exception_into_driver_error() -> None:
driver = _connected_driver()
driver._client.execute.side_effect = RuntimeError("boom")
with pytest.raises(DriverError):
driver.double_tap(1, 2)
并把 parametrize 追加:
("double_tap", {"x": 1, "y": 2}),
- Step 2: 运行确认失败
Run: uv run --all-packages pytest tests/test_android_driver.py -q
Expected: FAIL — AttributeError: 'AndroidDriver' object has no attribute 'double_tap'
- Step 3: 加抽象方法(
driver/base.py,接在long_press之后)
@abstractmethod
def double_tap(self, x: float, y: float, interval_ms: int = 80) -> None:
"""Tap twice at the given coordinates with ``interval_ms`` between."""
- Step 4: WDA + Android 实现(两处相同,各接在
long_press之后)
def double_tap(self, x: float, y: float, interval_ms: int = 80) -> None:
from driver._w3c_actions import build_double_tap_actions, perform_actions
client = self._require_client()
try:
perform_actions(client, build_double_tap_actions(x, y, interval_ms))
except Exception as exc:
raise DriverError("double tap failed") from exc
- Step 5: 同步全部 Fake/Stub 子类
tests/fakes.py::FakeDriver:
def double_tap(self, x: float, y: float, interval_ms: int = 80) -> None:
self.calls.append(("double_tap", (x, y, interval_ms)))
其余三处各加 no-op:
def double_tap(self, x: float, y: float, interval_ms: int = 80) -> None:
return None
- Step 6: 运行确认通过
Run: uv run --all-packages pytest tests/test_android_driver.py tests/test_describe_screen.py apps/device-host-agent/tests/test_execution.py apps/device-host-agent/tests/test_e2e.py -q
Expected: PASS
- Step 7: 提交
git add driver/base.py driver/wda_driver.py driver/android_driver.py tests/test_android_driver.py tests/fakes.py tests/test_describe_screen.py apps/device-host-agent/tests/test_execution.py apps/device-host-agent/tests/test_e2e.py
git commit -m "feat(driver): add Driver.double_tap via W3C actions"
Task 5: tools/long_press.py
Files:
- Create:
tools/long_press.py - Test:
tests/test_long_press.py
Interfaces:
-
Consumes:
tools.humanize(Task 1)、Driver.long_press(Task 2) -
Produces:
long_press(x, y, *, duration_ms=1200, device_id=None, manager=None) -> dict -
Step 1: 写失败测试
tests/test_long_press.py
from __future__ import annotations
from device.manager import DeviceManager
from tests.fakes import FakeDriver
def _connected(driver: FakeDriver) -> DeviceManager:
manager = DeviceManager()
manager.register_device("phone", lambda: driver)
manager.connect("phone", max_retries=1)
return manager
def test_long_press_disabled_passes_exact_coords(monkeypatch):
monkeypatch.setenv("APEX_HUMANIZE_ENABLED", "false")
from tools.long_press import long_press
driver = FakeDriver()
res = long_press(100, 200, duration_ms=1500, manager=_connected(driver))
assert driver.calls[-1] == ("long_press", (100, 200, 1500))
assert res["action"] == "long_press"
assert res["duration_ms"] == 1500
def test_long_press_enabled_jitters_within_radius(monkeypatch):
import random
monkeypatch.setenv("APEX_HUMANIZE_ENABLED", "true")
from tools.humanize import set_rng
from tools.long_press import long_press
set_rng(random.Random(5))
try:
driver = FakeDriver()
long_press(100, 200, duration_ms=1500, manager=_connected(driver))
finally:
set_rng(None)
name, args = driver.calls[-1]
assert name == "long_press"
px, py, _ = args
assert abs(px - 100) <= 5.0 and abs(py - 200) <= 5.0
- Step 2: 运行确认失败
Run: uv run --all-packages pytest tests/test_long_press.py -q
Expected: FAIL — ModuleNotFoundError: No module named 'tools.long_press'
- Step 3: 写实现
tools/long_press.py
from __future__ import annotations
from device.manager import DeviceManager
from tools._device import get_driver
from tools.humanize import (
get_rng,
jitter_duration,
jitter_point,
load_humanize_config,
)
def long_press(
x: float,
y: float,
*,
duration_ms: int = 1200,
device_id: str | None = None,
manager: DeviceManager | None = None,
) -> dict[str, object]:
cfg = load_humanize_config()
px, py = x, y
dms = duration_ms
if cfg.enabled:
rng = get_rng()
px, py = jitter_point(x, y, radius=cfg.tap_radius_px, rng=rng)
dms = jitter_duration(duration_ms, spread=cfg.duration_spread, rng=rng)
get_driver(device_id, manager=manager).long_press(px, py, dms)
return {"ok": True, "action": "long_press", "x": px, "y": py, "duration_ms": dms}
- Step 4: 运行确认通过
Run: uv run --all-packages pytest tests/test_long_press.py -q
Expected: PASS (2 passed)
- Step 5: 提交
git add tools/long_press.py tests/test_long_press.py
git commit -m "feat(tools): add long_press tool with humanize hook"
Task 6: tools/double_tap.py
Files:
- Create:
tools/double_tap.py - Test:
tests/test_double_tap.py
Interfaces:
-
Consumes:
tools.humanize(Task 1)、Driver.double_tap(Task 4) -
Produces:
double_tap(x, y, *, interval_ms=80, device_id=None, manager=None) -> dict -
Step 1: 写失败测试
tests/test_double_tap.py
from __future__ import annotations
from device.manager import DeviceManager
from tests.fakes import FakeDriver
def _connected(driver: FakeDriver) -> DeviceManager:
manager = DeviceManager()
manager.register_device("phone", lambda: driver)
manager.connect("phone", max_retries=1)
return manager
def test_double_tap_disabled_passes_exact(monkeypatch):
monkeypatch.setenv("APEX_HUMANIZE_ENABLED", "false")
from tools.double_tap import double_tap
driver = FakeDriver()
res = double_tap(50, 60, interval_ms=90, manager=_connected(driver))
assert driver.calls[-1] == ("double_tap", (50, 60, 90))
assert res["action"] == "double_tap"
def test_double_tap_enabled_jitters_within_radius(monkeypatch):
import random
monkeypatch.setenv("APEX_HUMANIZE_ENABLED", "true")
from tools.humanize import set_rng
from tools.double_tap import double_tap
set_rng(random.Random(8))
try:
driver = FakeDriver()
double_tap(50, 60, manager=_connected(driver))
finally:
set_rng(None)
px, py, _ = driver.calls[-1][1]
assert abs(px - 50) <= 5.0 and abs(py - 60) <= 5.0
- Step 2: 运行确认失败
Run: uv run --all-packages pytest tests/test_double_tap.py -q
Expected: FAIL — ModuleNotFoundError
- Step 3: 写实现
tools/double_tap.py
from __future__ import annotations
from device.manager import DeviceManager
from tools._device import get_driver
from tools.humanize import get_rng, jitter_duration, jitter_point, load_humanize_config
def double_tap(
x: float,
y: float,
*,
interval_ms: int = 80,
device_id: str | None = None,
manager: DeviceManager | None = None,
) -> dict[str, object]:
cfg = load_humanize_config()
px, py = x, y
interval = interval_ms
if cfg.enabled:
rng = get_rng()
px, py = jitter_point(x, y, radius=cfg.tap_radius_px, rng=rng)
interval = jitter_duration(interval_ms, spread=cfg.duration_spread, rng=rng)
get_driver(device_id, manager=manager).double_tap(px, py, interval)
return {
"ok": True,
"action": "double_tap",
"x": px,
"y": py,
"interval_ms": interval,
}
- Step 4: 运行确认通过
Run: uv run --all-packages pytest tests/test_double_tap.py -q
Expected: PASS (2 passed)
- Step 5: 提交
git add tools/double_tap.py tests/test_double_tap.py
git commit -m "feat(tools): add double_tap tool with humanize hook"
Task 7: tools/tap.py 加 humanize 钩子 + 测试默认关 humanize
Files:
- Modify:
tools/tap.py - Modify/Create:
tests/conftest.py(autouse fixture) - Test:
tests/test_tap_humanize.py
Interfaces:
-
Consumes:
tools.humanize(Task 1) -
改动后
tap(x, y, *, device_id=None, manager=None):humanize 开则坐标抖动,关则原样 -
Step 1: 写失败测试
tests/test_tap_humanize.py
from __future__ import annotations
from device.manager import DeviceManager
from tests.fakes import FakeDriver
def _connected(driver: FakeDriver) -> DeviceManager:
manager = DeviceManager()
manager.register_device("phone", lambda: driver)
manager.connect("phone", max_retries=1)
return manager
def test_tap_default_off_in_tests_passes_exact(monkeypatch):
# Autouse conftest fixture sets APEX_HUMANIZE_ENABLED=false; reaffirm here.
monkeypatch.setenv("APEX_HUMANIZE_ENABLED", "false")
from tools.tap import tap
driver = FakeDriver()
tap(10, 20, manager=_connected(driver))
assert driver.calls[-1] == ("tap", (10, 20))
def test_tap_enabled_jitters_within_radius(monkeypatch):
import random
monkeypatch.setenv("APEX_HUMANIZE_ENABLED", "true")
from tools.humanize import set_rng
from tools.tap import tap
set_rng(random.Random(11))
try:
driver = FakeDriver()
tap(10, 20, manager=_connected(driver))
finally:
set_rng(None)
px, py = driver.calls[-1][1]
assert abs(px - 10) <= 5.0 and abs(py - 20) <= 5.0
- Step 2: 加 autouse fixture(
tests/conftest.py,文件不存在则创建)
读取现有 tests/conftest.py(若存在);在文件末尾追加(不破坏既有内容):
import pytest
@pytest.fixture(autouse=True)
def _humanize_disabled_by_default_in_tests(monkeypatch):
"""Humanize defaults ON in production; tests default it OFF so existing
exact-coordinate assertions stay deterministic. Tests that want to
exercise humanize call ``monkeypatch.setenv("APEX_HUMANIZE_ENABLED", "true")``
in their own body, which overrides this fixture (test body runs after
fixture setup)."""
monkeypatch.setenv("APEX_HUMANIZE_ENABLED", "false")
若 conftest.py 已有 import pytest,不要重复 import。
- Step 3: 运行确认失败(实现未改前 tap 不抖动,第二条测试会 FAIL)
Run: uv run --all-packages pytest tests/test_tap_humanize.py -q
Expected: test_tap_default_off_in_tests_passes_exact PASS、test_tap_enabled_jitters_within_radius FAIL(坐标未偏移)
- Step 4: 改
tools/tap.py
from __future__ import annotations
from device.manager import DeviceManager
from tools._device import get_driver
from tools.humanize import get_rng, jitter_point, load_humanize_config
def tap(
x: float,
y: float,
*,
device_id: str | None = None,
manager: DeviceManager | None = None,
) -> dict[str, object]:
cfg = load_humanize_config()
px, py = x, y
if cfg.enabled:
px, py = jitter_point(x, y, radius=cfg.tap_radius_px, rng=get_rng())
get_driver(device_id, manager=manager).tap(px, py)
return {"ok": True, "action": "tap", "x": px, "y": py}
- Step 5: 运行新测试 + 回归 tap 相关测试
Run: uv run --all-packages pytest tests/test_tap_humanize.py tests/test_skill_catalog_e2e.py tests/test_semantic_task_loop.py tests/test_mcp.py -q
Expected: PASS(autouse fixture 保护了既有精确坐标断言)
- Step 6: 提交
git add tools/tap.py tests/conftest.py tests/test_tap_humanize.py
git commit -m "feat(tools): humanize tap coordinates; default off in tests"
Task 8: tools/swipe.py 加 humanize 钩子(开→swipe_path)
Files:
- Modify:
tools/swipe.py - Test:
tests/test_swipe_humanize.py
Interfaces:
-
Consumes:
tools.humanize(Task 1)、Driver.swipe_path(Task 3) -
改动后
swipe(...):humanize 开→driver.swipe_path(waypoints, jittered_duration);关→原driver.swipe(...) -
Step 1: 写失败测试
tests/test_swipe_humanize.py
from __future__ import annotations
from device.manager import DeviceManager
from tests.fakes import FakeDriver
def _connected(driver: FakeDriver) -> DeviceManager:
manager = DeviceManager()
manager.register_device("phone", lambda: driver)
manager.connect("phone", max_retries=1)
return manager
def test_swipe_disabled_uses_two_point_swipe(monkeypatch):
monkeypatch.setenv("APEX_HUMANIZE_ENABLED", "false")
from tools.swipe import swipe
driver = FakeDriver()
swipe(0, 0, 100, 0, duration_ms=500, manager=_connected(driver))
assert driver.calls[-1] == ("swipe", (0, 0, 100, 0, 500))
def test_swipe_enabled_uses_curved_swipe_path(monkeypatch):
import random
monkeypatch.setenv("APEX_HUMANIZE_ENABLED", "true")
from tools.humanize import set_rng
from tools.swipe import swipe
set_rng(random.Random(21))
try:
driver = FakeDriver()
swipe(0, 0, 100, 0, duration_ms=500, manager=_connected(driver))
finally:
set_rng(None)
name, args = driver.calls[-1]
assert name == "swipe_path"
waypoints, _dms = args
assert waypoints[0] == (0, 0)
assert waypoints[-1] == (100, 0)
assert len(waypoints) > 2 # curved: more than just endpoints
- Step 2: 运行确认失败
Run: uv run --all-packages pytest tests/test_swipe_humanize.py -q
Expected: test_swipe_disabled_uses_two_point_swipe PASS、test_swipe_enabled_uses_curved_swipe_path FAIL
- Step 3: 改
tools/swipe.py
from __future__ import annotations
from device.manager import DeviceManager
from tools._device import get_driver
from tools.humanize import (
get_rng,
jitter_duration,
load_humanize_config,
swipe_waypoints,
)
def swipe(
start_x: float,
start_y: float,
end_x: float,
end_y: float,
*,
duration_ms: int = 500,
device_id: str | None = None,
manager: DeviceManager | None = None,
) -> dict[str, object]:
cfg = load_humanize_config()
if cfg.enabled:
rng = get_rng()
dms = jitter_duration(duration_ms, spread=cfg.duration_spread, rng=rng)
waypoints = swipe_waypoints(
(start_x, start_y),
(end_x, end_y),
curvature=cfg.swipe_curvature,
n=cfg.swipe_waypoints,
rng=rng,
)
get_driver(device_id, manager=manager).swipe_path(waypoints, dms)
return {
"ok": True,
"action": "swipe",
"waypoints": waypoints,
"duration_ms": dms,
}
get_driver(device_id, manager=manager).swipe(
start_x, start_y, end_x, end_y, duration_ms
)
return {
"ok": True,
"action": "swipe",
"start": {"x": start_x, "y": start_y},
"end": {"x": end_x, "y": end_y},
"duration_ms": duration_ms,
}
- Step 4: 运行确认通过 + swipe 回归
Run: uv run --all-packages pytest tests/test_swipe_humanize.py tests/test_android_driver.py -q
Expected: PASS
- Step 5: 提交
git add tools/swipe.py tests/test_swipe_humanize.py
git commit -m "feat(tools): humanize swipe into curved W3C path when enabled"
Task 9: Planner 集成(tool_specs + executor registry + prompt)
Files:
- Modify:
runtime/tool_specs.py - Modify:
runtime/executor.py - Modify:
runtime/planner_prompts.py - Test:
tests/test_tool_specs.py、tests/test_executor.py
Interfaces:
-
Consumes:
tools.long_press(Task 5)、tools.double_tap(Task 6) -
Produces:
LONG_PRESS_SPEC、DOUBLE_TAP_SPEC加入ACTION_TOOL_SPECS;executor registry 多 2 个键;prompt 工具枚举更新 -
Step 1: 写失败测试(追加到
tests/test_tool_specs.py)
先读 tests/test_tool_specs.py 既有断言风格,再追加:
def test_long_press_and_double_tap_are_action_tools():
from runtime.tool_specs import ACTION_TOOL_NAMES
assert "long_press" in ACTION_TOOL_NAMES
assert "double_tap" in ACTION_TOOL_NAMES
def test_long_press_spec_has_duration_with_default():
from runtime.tool_specs import LONG_PRESS_SPEC
props = LONG_PRESS_SPEC.parameters["properties"]
assert props["x"]["type"] == "number"
assert props["y"]["type"] == "number"
assert props["duration_ms"]["default"] == 1200
# purpose/expected_outcome are required metadata
assert "purpose" in LONG_PRESS_SPEC.parameters["required"]
def test_double_tap_spec_has_interval_with_default():
from runtime.tool_specs import DOUBLE_TAP_SPEC
props = DOUBLE_TAP_SPEC.parameters["properties"]
assert props["interval_ms"]["default"] == 80
并在 tests/test_executor.py 追加:
def test_default_registry_dispatches_long_press_and_double_tap():
from runtime.executor import default_tool_registry
registry = default_tool_registry()
assert callable(registry["long_press"])
assert callable(registry["double_tap"])
- Step 2: 运行确认失败
Run: uv run --all-packages pytest tests/test_tool_specs.py tests/test_executor.py -q
Expected: FAIL — ImportError: cannot import name 'LONG_PRESS_SPEC'
- Step 3: 改
runtime/tool_specs.py(在TAP_SPEC之后插入两个 spec,并把它们加进ACTION_TOOL_SPECS)
在 TAP_SPEC 定义之后插入:
LONG_PRESS_SPEC = ToolSpec(
name="long_press",
description="Press and hold a point on the screen, given in Scene pixel coordinates.",
parameters=_action_parameters(
required=["x", "y"],
properties={
"x": {"type": "number", "description": "X coordinate in Scene pixel space."},
"y": {"type": "number", "description": "Y coordinate in Scene pixel space."},
"duration_ms": {
"type": "integer",
"description": "Hold duration in milliseconds (ignored on some platforms).",
"default": 1200,
},
},
),
)
DOUBLE_TAP_SPEC = ToolSpec(
name="double_tap",
description="Tap a point twice quickly, given in Scene pixel coordinates.",
parameters=_action_parameters(
required=["x", "y"],
properties={
"x": {"type": "number", "description": "X coordinate in Scene pixel space."},
"y": {"type": "number", "description": "Y coordinate in Scene pixel space."},
"interval_ms": {
"type": "integer",
"description": "Milliseconds between the two taps.",
"default": 80,
},
},
),
)
并把 ACTION_TOOL_SPECS 列表改为:
ACTION_TOOL_SPECS: list[ToolSpec] = [
TAP_SPEC,
LONG_PRESS_SPEC,
DOUBLE_TAP_SPEC,
SWIPE_SPEC,
INPUT_TEXT_SPEC,
LAUNCH_APP_SPEC,
TERMINATE_APP_SPEC,
]
- Step 4: 改
runtime/executor.py::default_tool_registry
在 import 段加:
from tools.double_tap import double_tap
from tools.long_press import long_press
在返回 dict 内("tap": ... 之后)加:
"long_press": _bind_manager(long_press, manager),
"double_tap": _bind_manager(double_tap, manager),
- Step 5: 改
runtime/planner_prompts.py的工具枚举
把 PLANNER_SYSTEM_PROMPT 里:
- One of `tap`, `swipe`, `input_text`, `launch_app`, `terminate_app` to make
progress toward the goal.
改为:
- One of `tap`, `long_press`, `double_tap`, `swipe`, `input_text`,
`launch_app`, `terminate_app` to make progress toward the goal. Use
`long_press` for press-and-hold gestures (context menus, drag handles) and
`double_tap` for zoom/selection double-taps.
- Step 6: 运行确认通过
Run: uv run --all-packages pytest tests/test_tool_specs.py tests/test_executor.py tests/test_humanize.py tests/test_long_press.py tests/test_double_tap.py tests/test_tap_humanize.py tests/test_swipe_humanize.py tests/test_w3c_actions.py tests/test_android_driver.py -q
Expected: PASS
- Step 7: 全量回归 + lint
Run: uv run --all-packages pytest -m "not integration" -q
Expected: 全绿(既有非集成测试无回归;留意 test_deployment_config.py 的预存失败是否仍为预存)
Run: uv run --with ruff ruff check tools/humanize.py tools/long_press.py tools/double_tap.py tools/tap.py tools/swipe.py driver/_w3c_actions.py driver/wda_driver.py driver/android_driver.py driver/base.py runtime/tool_specs.py runtime/executor.py runtime/planner_prompts.py
Expected: 无错误
- Step 8: 提交
git add runtime/tool_specs.py runtime/executor.py runtime/planner_prompts.py tests/test_tool_specs.py tests/test_executor.py
git commit -m "feat(planner): expose long_press/double_tap to the AI planner"
Self-Review(plan 完成后自查,已执行)
- Spec coverage:spec §4.1 两个新原语 → Task 5/6;§4.2 humanize 模块 → Task 1;§4.3 W3C 共享 + swipe_path/double_tap → Task 3/4;§4.4 开关矩阵 → Task 7/8(tap/swipe)+ Task 5/6(新工具自带);§4.5 tool_specs+registry → Task 9;§4.6 prompt → Task 9;§3 命令矩阵 → Task 2(long_press)+ Task 3(swipe W3C)+ Task 4(double_tap W3C);§5 env → Task 1;§7 测试 → 每个任务 TDD。无遗漏。
- Placeholder scan:无 TBD/TODO;每步含完整代码或确切命令。命令名核实步骤(Task 2 Step 1)有可执行指令。
- Type consistency:
Driver.long_press(x,y,duration_ms=1200)、swipe_path(waypoints, duration_ms)、double_tap(x,y,interval_ms=80)在 ABC/两驱动/Fake/工具/spec 间签名一致;build_swipe_actions/build_double_tap_actions/perform_actions在 Task 3 定义、Task 4 复用,名称一致。
Execution Handoff
Plan complete and saved to docs/superpowers/plans/2026-07-15-gesture-primitives-humanize.md.(未提交,下一步先提交此 plan 再执行。)