Skip to main content

gui-self-reflection-and-error-correction

Use this skill when the agent needs to handle environmental obstacles like pop-up advertisements blocking the target, or when it must correct common interactive widget errors such as pre-filled text in form fields and incorrect date-picker formats. Trigger it for requests like 'something is in the way of the button,' 'there is already text in the box I need to type in,' 'the date picker keeps resetting,' or 'close whatever is blocking the screen before you continue.' This skill focuses on detecting UX disruptions and state-entry conflicts to ensure the visual outcome matches the specific user goal despite environmental noise.

الانتقال إلى التثبيت

معلومات المصدر

المستودع
Dingxingdi/paper_fast_search_backup
آخر نشاط في المصدر
١٠ أبريل ٢٠٢٦ في ٠١:٢٧
لغة SKILL.md المكتشفة
الإنجليزية
النجوم
٠
التفرعات
٠

خيارات التثبيت

يُحدَّد Prompt الذي يراجع المصدر أولًا بشكل افتراضي. يمكنك التبديل إلى أمر مباشر أو تنزيل نسخة محلية.

مراجعة ملفات المصدر

اقرأ SKILL.md وأي ملفات مرافقة يعرضها SkillsMP قبل أن تقرر التثبيت.

مستكشف الملفات
4 ملفات

عرض SKILL.md

SKILL.md
تعليمات المصدر · معاينة للقراءة فقط
name
gui-self-reflection-and-error-correction
description
Use this skill when the agent needs to handle environmental obstacles like pop-up advertisements blocking the target, or when it must correct common interactive widget errors such as pre-filled text in form fields and incorrect date-picker formats. Trigger it for requests like 'something is in the way of the button,' 'there is already text in the box I need to type in,' 'the date picker keeps resetting,' or 'close whatever is blocking the screen before you continue.' This skill focuses on detecting UX disruptions and state-entry conflicts to ensure the visual outcome matches the specific user goal despite environmental noise.
# Skill: gui-self-reflection-and-error-correction ## 1. Capability Definition & Real Case * **Professional Definition**: The capability to continuously monitor graphical outcomes against a target goal to recognize and mitigate deviations caused by self-induced errors or real-world environmental anomalies, specifically addressing UX disruptions like pop-up overlays, state-entry conflicts such as pre-filled input buffers, and widget-dependent constraints like specific date/time formats. This requires overcoming 'Perception Drift'—where internal history conflicts with a reset or obscured UI—and performing 'Outcome Evaluation' to distinguish between a task that is truly complete and one that remains blocked by artifacts like interstitial advertisements or incorrect auto-formatting in complex interactive widgets. * **Dimension Hierarchy**: Reliable and Aligned Operation->Error-Resilient Self-Correction->gui-self-reflection-and-error-correction ### Real Case **[Case 1]** * **Initial Environment**: A web application for color selection is open. The 'Hex Code' input field is pre-populated with a default '#' character from a previous session, but the user's intended code also starts with '#'. * **Real Question**: Change the primary color to #EDC55E. * **Real Trajectory**: 1. Locate the color input field on the canvas. 2. Observe that the field already contains a '#'. 3. Analyze the conflict where simply typing the full code would result in '##EDC55E', causing a format error. 4. Execute a click on the field, backspace to clear the pre-existing '#', and then type the fresh code '#EDC55E'. 5. Verify the color box updates to the specific shade of gold. * **Real Answer**: The primary color is changed to #EDC55E after clearing the pre-filled buffer. * **Why this demonstrates the capability**: This case demonstrates reflection on state-entry conflicts. The agent must recognize that a pre-existing character in the input buffer acts as a 'state pollutant' and proactively perform a corrective 'clean-up' interaction before continuing with the primary intent to avoid a logic failure. --- **[Case 2]** * **Initial Environment**: An airline booking website is rendered in the browser. A large 'Sign Up for Savings' pop-up modal has appeared in the center of the screen, completely obscuring the language selection menu located in the header. * **Real Question**: Set the language to Portuguese. * **Real Trajectory**: 1. Perform a visual sweep and identify the target language menu area. 2. Recognize that the 'Sign Up' modal is a prioritized overlay blocking the interactive nodes of the header. 3. Locate the 'X' or 'Close' button on the top-right of the modal. 4. Dismiss the pop-up and verify that the header elements are now fully visible and active. 5. Click the language menu and select 'Portuguese'. * **Real Answer**: The language is set to Portuguese after dismissing the blocking pop-up modal. * **Why this demonstrates the capability**: This demonstrates recovery from UX disruptions. Instead of failing due to a 'missing' button, the agent identifies the causal reason—the pop-up—and adaptively modifies its trajectory to remove the obstacle, restoring the environmental state needed for the core task. --- **[Case 3]** * **Initial Environment**: A complex date-picker widget is open on a travel portal. The widget enforced a strict 'MM/DD/YYYY' entry format, but the agent's internal prior assumes 'YYYY-MM-DD'. * **Real Question**: Select March 21 2025 as the departing date. * **Real Trajectory**: 1. Click the 'Departing' date input. 2. Type '2025-03-21' based on a general habit. 3. Observe the UI response where the field turns red or resets to blank. 4. Reflect on the error by inspecting the grey placeholder text which reads 'MM/DD/YYYY'. 5. Correct the action by entering '03/21/2025' and verify that the date-picker calendar highlights the correct day in March. * **Real Answer**: The date March 21 2025 is successfully selected using the MM/DD/YYYY format. * **Why this demonstrates the capability**: This illustrates self-correction of widget-dependent constraints. The agent must process the negative outcome of its first attempt, identify the specific format requirement through visual cues (placeholder text or error signals), and pivot to a format-aligned interaction sequence. ## Pipeline Execution Instructions To synthesize data for this capability, you must strictly follow a 3-phase pipeline. **Do not hallucinate steps.** Read the corresponding reference file for each phase sequentially: 1. **Phase 1: Environment Exploration** Read the exploration guidelines to discover raw knowledge seeds: `references/EXPLORATION.md` 2. **Phase 2: Trajectory Selection** Once Phase 1 is complete, read the selection criteria to evaluate the trajectory: `references/SELECTION.md` 3. **Phase 3: Data Synthesis** Once a trajectory passes Phase 2, read the synthesis instructions to generate the final data: `references/SYNTHESIS.md`
عرض على GitHub