snapshot before regression test

This commit is contained in:
t
2026-07-18 19:25:40 +08:00
commit 796222a300
2295 changed files with 206453 additions and 0 deletions

View File

@@ -0,0 +1,308 @@
from stdint import *
import w32.win32console
import t, c
from t import CInt, CExport
import _fakeduck
import stdio
import stdlib
import string
import memhub
import testcheck
import _withcontent
def main() -> CInt | CExport:
w32.win32console.SetConsoleCP(65001)
w32.win32console.SetConsoleOutputCP(65001)
# FakeDuck 测试: str 类型调用扩展方法 b()
a: str = "Hello"
# Type 通用基类测试: str 变量调用 Type 的方法 type_id()
tid: CInt = a.type_id()
if tid == 99:
stdio.printf("Type OK: a.type_id() = %d\n", tid)
else:
stdio.printf("Type FAIL: a.type_id() = %d\n", tid)
# 直接字段访问测试: 读取 a.__data__ (应等于 a 本身)
data_ptr: str = a.__data__
stdio.printf("a.__data__ = %s\n", data_ptr)
# upper() 测试: 通过 mbuddy 分配内存,返回大写字符串
arena: bytes = stdlib.malloc(65536)
bd: memhub.MemBuddy | t.CPtr = memhub.MemBuddy(arena, 65536)
# 直接字段赋值: a.__mbuddy__ = bd (语法糖, 等价于 a.set_mbuddy(bd))
a.__mbuddy__ = bd
upper_str: str = a.upper()
stdio.printf("upper('Hello') = %s\n", upper_str)
# 验证 per-instance 不污染: b 没有设置 __mbuddy__ (初始为 NULL)
b: str = "World"
# 直接字段读取: b.__mbuddy__ (应返回 NULL)
b_buddy: memhub.MemBuddy | t.CPtr = b.__mbuddy__
if t.CInt(b_buddy) == 0:
stdio.printf("mbuddy OK: b.__mbuddy__ is NULL (no pollution)\n")
else:
stdio.printf("mbuddy FAIL: b.__mbuddy__ polluted!\n")
# b 也设置 mbuddy 并 upper
b.__mbuddy__ = bd
upper_b: str = b.upper()
stdio.printf("upper('World') = %s\n", upper_b)
# lower() 测试
lower_str: str = a.lower()
stdio.printf("lower('Hello') = %s\n", lower_str)
# capitalize() 测试
cap_str: str = a.capitalize()
stdio.printf("capitalize('Hello') = %s\n", cap_str)
# swapcase() 测试
swap_str: str = a.swapcase()
stdio.printf("swapcase('Hello') = %s\n", swap_str)
# casefold() 测试
cf_str: str = a.casefold()
stdio.printf("casefold('Hello') = %s\n", cf_str)
# title() 测试
t_str: str = "hello world"
t_str.__mbuddy__ = bd
title_result: str = t_str.title()
stdio.printf("title('hello world') = %s\n", title_result)
# 布尔判断函数测试 (不需要 __mbuddy__)
u: str = "HELLO"
lo: str = "hello"
dig: str = "12345"
alnum_s: str = "Hello123"
space_s: str = " "
title_s: str = "Hello World"
punct_s: str = "Hello!"
stdio.printf("isupper('HELLO') = %d\n", u.isupper())
stdio.printf("isupper('Hello') = %d\n", a.isupper())
stdio.printf("islower('hello') = %d\n", lo.islower())
stdio.printf("islower('Hello') = %d\n", a.islower())
stdio.printf("isalpha('Hello') = %d\n", a.isalpha())
stdio.printf("isalpha('Hello123') = %d\n", alnum_s.isalpha())
stdio.printf("isdigit('12345') = %d\n", dig.isdigit())
stdio.printf("isdigit('Hello') = %d\n", a.isdigit())
stdio.printf("isalnum('Hello123') = %d\n", alnum_s.isalnum())
stdio.printf("isalnum('Hello!') = %d\n", punct_s.isalnum())
stdio.printf("isspace(' ') = %d\n", space_s.isspace())
stdio.printf("isspace('Hello') = %d\n", a.isspace())
stdio.printf("isascii('Hello') = %d\n", a.isascii())
stdio.printf("istitle('Hello World') = %d\n", title_s.istitle())
stdio.printf("istitle('hello world') = %d\n", t_str.istitle())
# === split() 测试 ===
testcheck.begin("FakeDuck split() 测试")
# Test 1: 基本分割
testcheck.section("Test 1: 基本分割 'a,b,c'")
s1: str = "a,b,c"
s1.__mbuddy__ = bd
parts = s1.split(',')
n1: t.CSizeT = parts.__len__()
stdio.printf("split('a,b,c', ',') len=%lu\n", n1)
testcheck.check(n1 == 3, "split len OK (3)", "split len FAILED expect 3")
p0: str = parts[0]
p1: str = parts[1]
p2: str = parts[2]
stdio.printf("parts[0]='%s' [1]='%s' [2]='%s'\n", p0, p1, p2)
testcheck.check(p0 == "a", "split[0]=='a' OK", "split[0] FAILED")
testcheck.check(p1 == "b", "split[1]=='b' OK", "split[1] FAILED")
testcheck.check(p2 == "c", "split[2]=='c' OK", "split[2] FAILED")
# Test 2: 空字符串分割
testcheck.section("Test 2: 无分隔符 'hello'")
s2: str = "hello"
s2.__mbuddy__ = bd
parts2 = s2.split(',')
n2: t.CSizeT = parts2.__len__()
stdio.printf("split('hello', ',') len=%lu\n", n2)
testcheck.check(n2 == 1, "no-delim len OK (1)", "no-delim len FAILED expect 1")
h0: str = parts2.get(0)
testcheck.check(h0 == "hello", "no-delim[0]=='hello' OK", "no-delim[0] FAILED")
# Test 3: 连续分隔符
testcheck.section("Test 3: 连续分隔符 'a,,b'")
s3: str = "a,,b"
s3.__mbuddy__ = bd
parts3 = s3.split(',')
n3: t.CSizeT = parts3.__len__()
stdio.printf("split('a,,b', ',') len=%lu\n", n3)
testcheck.check(n3 == 3, "consecutive len OK (3)", "consecutive len FAILED expect 3")
e0: str = parts3.get(0)
e1: str = parts3.get(1)
e2: str = parts3.get(2)
stdio.printf("parts[0]='%s' [1]='%s' [2]='%s'\n", e0, e1, e2)
testcheck.check(e0 == "a", "consec[0]=='a' OK", "consec[0] FAILED")
testcheck.check(e1 == "", "consec[1]=='' OK", "consec[1] FAILED")
testcheck.check(e2 == "b", "consec[2]=='b' OK", "consec[2] FAILED")
# Test 4: 空字符串
testcheck.section("Test 4: 空字符串 ''")
s4: str = ""
s4.__mbuddy__ = bd
parts4 = s4.split(',')
n4: t.CSizeT = parts4.__len__()
stdio.printf("split('', ',') len=%lu\n", n4)
testcheck.check(n4 == 1, "empty len OK (1)", "empty len FAILED expect 1")
# Test 5: 空格分割句子
testcheck.section("Test 5: 空格分割 'hello world foo'")
s5: str = "hello world foo"
s5.__mbuddy__ = bd
parts5 = s5.split(' ')
n5: t.CSizeT = parts5.__len__()
stdio.printf("split('hello world foo', ' ') len=%lu\n", n5)
testcheck.check(n5 == 3, "space len OK (3)", "space len FAILED expect 3")
w0: str = parts5[0]
w1: str = parts5[1]
w2: str = parts5[2]
stdio.printf("words[0]='%s' [1]='%s' [2]='%s'\n", w0, w1, w2)
testcheck.check(w0 == "hello", "space[0]=='hello' OK", "space[0] FAILED")
testcheck.check(w1 == "world", "space[1]=='world' OK", "space[1] FAILED")
testcheck.check(w2 == "foo", "space[2]=='foo' OK", "space[2] FAILED")
# Test 6: 多字符分隔符 '::'
testcheck.section("Test 6: 多字符分隔符 '::' on 'a::b::c'")
s6: str = "a::b::c"
s6.__mbuddy__ = bd
parts6 = s6.split("::")
n6: t.CSizeT = parts6.__len__()
stdio.printf("split('a::b::c', '::') len=%lu\n", n6)
testcheck.check(n6 == 3, "multi-colon len OK (3)", "multi-colon len FAILED expect 3")
m0: str = parts6[0]
m1: str = parts6[1]
m2: str = parts6[2]
stdio.printf("parts[0]='%s' [1]='%s' [2]='%s'\n", m0, m1, m2)
testcheck.check(m0 == "a", "multi-colon[0]=='a' OK", "multi-colon[0] FAILED")
testcheck.check(m1 == "b", "multi-colon[1]=='b' OK", "multi-colon[1] FAILED")
testcheck.check(m2 == "c", "multi-colon[2]=='c' OK", "multi-colon[2] FAILED")
# Test 7: 多字符分隔符 ', ' (逗号+空格)
testcheck.section("Test 7: 多字符分隔符 ', ' on 'hello, world, foo'")
s7: str = "hello, world, foo"
s7.__mbuddy__ = bd
parts7 = s7.split(", ")
n7: t.CSizeT = parts7.__len__()
stdio.printf("split('hello, world, foo', ', ') len=%lu\n", n7)
testcheck.check(n7 == 3, "comma-space len OK (3)", "comma-space len FAILED expect 3")
cs0: str = parts7[0]
cs1: str = parts7[1]
cs2: str = parts7[2]
stdio.printf("parts[0]='%s' [1]='%s' [2]='%s'\n", cs0, cs1, cs2)
testcheck.check(cs0 == "hello", "comma-space[0]=='hello' OK", "comma-space[0] FAILED")
testcheck.check(cs1 == "world", "comma-space[1]=='world' OK", "comma-space[1] FAILED")
testcheck.check(cs2 == "foo", "comma-space[2]=='foo' OK", "comma-space[2] FAILED")
# Test 8: 多字符分隔符在首尾
testcheck.section("Test 8: 多字符分隔符首尾 '::a::b::'")
s8: str = "::a::b::"
s8.__mbuddy__ = bd
parts8 = s8.split("::")
n8: t.CSizeT = parts8.__len__()
stdio.printf("split('::a::b::', '::') len=%lu\n", n8)
testcheck.check(n8 == 4, "edge len OK (4)", "edge len FAILED expect 4")
ed0: str = parts8[0]
ed1: str = parts8[1]
ed2: str = parts8[2]
ed3: str = parts8[3]
stdio.printf("parts[0]='%s' [1]='%s' [2]='%s' [3]='%s'\n", ed0, ed1, ed2, ed3)
testcheck.check(ed0 == "", "edge[0]=='' OK", "edge[0] FAILED")
testcheck.check(ed1 == "a", "edge[1]=='a' OK", "edge[1] FAILED")
testcheck.check(ed2 == "b", "edge[2]=='b' OK", "edge[2] FAILED")
testcheck.check(ed3 == "", "edge[3]=='' OK", "edge[3] FAILED")
# === with 上下文自动注入测试 ===
testcheck.section("Test 9: with 上下文自动注入 __mbuddy__")
arena2: bytes = stdlib.malloc(65536)
with memhub.MemBuddy(arena2, 65536) as bd2:
# str 变量在 with 上下文内创建__mbuddy__ 应自动注入(无需手动赋值)
w_str: str = "WithTest"
# 验证 __mbuddy__ 已自动注入(非 NULL
w_buddy: memhub.MemBuddy | t.CPtr = w_str.__mbuddy__
testcheck.check(t.CInt(w_buddy) != 0, "with inject OK: __mbuddy__ auto-injected", "with inject FAIL: __mbuddy__ is NULL")
# upper() 不需要手动设置 __mbuddy__
w_upper: str = w_str.upper()
stdio.printf("with upper('WithTest') = %s\n", w_upper)
testcheck.check(w_upper == "WITHTEST", "with upper OK", "with upper FAILED")
# lower() 不需要手动设置 __mbuddy__
w_lower: str = w_str.lower()
stdio.printf("with lower('WithTest') = %s\n", w_lower)
testcheck.check(w_lower == "withtest", "with lower OK", "with lower FAILED")
# split() 不需要手动设置 __mbuddy__
w_split_str: str = "x,y,z"
w_parts = w_split_str.split(',')
w_n: t.CSizeT = len(w_parts)
stdio.printf("with split('x,y,z') len=%lu\n", w_n)
testcheck.check(w_n == 3, "with split len OK (3)", "with split len FAILED")
# 验证多个 str 变量都获得注入
w_str2: str = "Multiple"
w_buddy2: memhub.MemBuddy | t.CPtr = w_str2.__mbuddy__
testcheck.check(t.CInt(w_buddy2) != 0, "with multi inject OK", "with multi inject FAIL")
test_s: str = "www.gvsds.com"
list_s: list[str] = test_s.split('.')
# 迭代器测试: for idx, i in zip(range(len(list_s)), list_s)
iter_count: int = 0
for iter_idx, i in zip(range(len(list_s)), list_s):
stdio.printf("list_s[%d]='%s'\n", iter_idx, i)
iter_count += 1
testcheck.check(iter_count == 3, "zip(range(len), list) iter OK (3)", "zip(range(len), list) iter FAILED")
#for i in range(3):
# stdio.printf("list_s[%d]='%s'\n", i, list_s[i])
# === zip() 内置测试 ===
testcheck.section("Test 10: zip(list, list) 元组解包")
za: str = "a,b,c"
zb: str = "1,2,3"
list_a: list[str] = za.split(',')
list_b: list[str] = zb.split(',')
zip_idx: int = 0
for ca, cb in zip(list_a, list_b):
stdio.printf("zip[%d]: '%s'='%s'\n", zip_idx, ca, cb)
zip_idx += 1
testcheck.check(zip_idx == 3, "zip list+list OK (3)", "zip list+list FAILED")
testcheck.section("Test 11: zip(range, list) 混合迭代")
zip_idx2: int = 0
for n, s in zip(range(3), list_a):
stdio.printf("zip range+list[%d]: %d='%s'\n", zip_idx2, n, s)
zip_idx2 += 1
testcheck.check(zip_idx2 == 3, "zip range+list OK (3)", "zip range+list FAILED")
testcheck.section("Test 12: zip(str, str) 字符级并行")
sa: str = "abc"
sb: str = "123"
zip_idx3: int = 0
for ch_a, ch_b in zip(sa, sb):
stdio.printf("zip str+str[%d]: '%c'%c\n", zip_idx3, ch_a, ch_b)
zip_idx3 += 1
testcheck.check(zip_idx3 == 3, "zip str+str OK (3)", "zip str+str FAILED")
stdio.printf("%d\n", " ".isspace())
stdlib.free(arena2)
stdlib.free(arena)
return testcheck.end()