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import gradio as gr
import sympy as sp
TITLE = "LanguageBridge — Math Fast Agent (SymPy)"
def solve_math(q: str):
q = (q or "").strip()
if not q:
return "請輸入算式或方程,例如:2x+3=11;或:sin(x)**2 + cos(x)**2;或:factor(x**2-9)"
try:
# 1) 如果像 "2x+3=11" 或 "x+y=3; x-y=1"
if "=" in q:
# 支援多行/分號;同時支援聯立
parts = [s.strip() for seg in q.split(";") for s in seg.split("\n")]
eqs = []
syms = set()
for s in parts:
if not s:
continue
left, right = s.split("=", 1)
eq = sp.Eq(sp.sympify(left), sp.sympify(right))
eqs.append(eq)
syms |= eq.free_symbols
syms |= eq.rhs.free_symbols if hasattr(eq, "rhs") else set()
if not syms:
# 預設一個 x
x = sp.symbols("x")
syms = {x}
sol = sp.solve(eqs, list(syms), dict=True)
if not sol:
return "無解或需要更多條件。"
# 格式化
lines = []
for i, s in enumerate(sol, 1):
lines.append(f"解 {i}: " + ", ".join([f"{k} = {sp.simplify(v)}" for k, v in s.items()]))
return "\n".join(lines)
# 2) 非方程:嘗試自動辨識可做的操作(簡化/因式分解/微分/積分…)
expr = sp.sympify(q)
# 嘗試:若像 “diff(sin(x), x)” 就直接回傳求導;否則做一輪常見操作建議
try:
simplified = sp.simplify(expr)
except Exception:
simplified = expr
tips = []
tips.append(f"簡化:{simplified}")
try:
fact = sp.factor(expr)
if fact != expr:
tips.append(f"因式分解:{fact}")
except Exception:
pass
try:
x = list(expr.free_symbols)[0] if expr.free_symbols else sp.symbols("x")
tips.append(f"對 {x} 微分:{sp.diff(expr, x)}")
tips.append(f"對 {x} 積分:{sp.integrate(expr, x)}")
except Exception:
pass
return "\n".join(tips) if tips else f"結果:{expr}"
except Exception as e:
return f"解析失敗:{e}"
with gr.Blocks(title=TITLE) as demo:
gr.Markdown(f"## {TITLE}\n貼上算式(可多行 / 用分號 `;` 分隔):")
with gr.Row():
q = gr.Textbox(lines=6, label="題目 / 算式(可含聯立方程)")
with gr.Row():
out = gr.Textbox(lines=10, label="輸出")
btn = gr.Button("送出 🚀")
btn.click(fn=solve_math, inputs=q, outputs=out)
if __name__ == "__main__":
# 在 Colab 本機預覽一定要 share=True 才會印出 public URL
demo.launch(share=True)