91 lines
3.4 KiB
Python
91 lines
3.4 KiB
Python
import numpy as np
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import PIL.ImageFont as pilfont
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import PIL.Image as pilimage
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import PIL.ImageDraw as pildraw
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def generate_chinese_struct(char_code, font, size):
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image = pilimage.new('L', size)
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draw = pildraw.Draw(image)
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draw.text((0, 0), char_code, font=font, fill=255)
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pixel_array = np.array(image)
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result = np.zeros(size[0] * size[1] // 8, dtype=np.uint8)
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for i in range(size[1]):
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for j in range(size[0] // 8):
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for k in range(8):
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if pixel_array[j * 8 + k, i]:
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result[j * size[1] + i] |= (1 << k)
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return result
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def generate_chinese_array(input_str, font_str, size):
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font = pilfont.truetype(font_str, size=size[1])
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chinese_array = []
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for char_code in input_str:
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char_struct = generate_chinese_struct(char_code, font, size)
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chinese_array.append({'name': char_code, 'data': char_struct})
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return chinese_array
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def format_chinese_array_as_text(chinese_array, size):
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text_output = "#pragma pack(1)\n\n"
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text_output += f"typedef struct {{\n"
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text_output += " uint8_t unicode[2];\n"
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text_output += f" uint8_t data[{size[0] * size[1] // 8}];\n"
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text_output += "} Chinese_t;\n\n"
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text_output += f"uint8_t Hzk_size={size[0]};\n\n"
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text_output += "Chinese_t Hzk[] = {\n"
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line_size = size[0] * size[1] // 8
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line_size = line_size // 2
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# line_size = 16 if line_size >= 16 else 8
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for item in chinese_array:
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unicode_hex = ', '.join(f"0x{ord(char) >> 8:02X}, 0x{ord(char) & 0xFF:02X}" for char in item['name'])
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text_output += f" {{\n // Original: {item['name']}\n"
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text_output += f" {{ {unicode_hex} }},\n {{\n "
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bytes_str = ', '.join(f"0x{byte:02X}" for byte in item['data'])
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bytes_lines = [bytes_str[i:i + 6 * line_size] for i in range(0, len(bytes_str), 6 * line_size)]
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# 每行显示line_size个字节
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text_output += '\n '.join(bytes_lines)
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text_output += ",\n }\n },\n"
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text_output += "};\n\n"
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text_output += "Chinese_t* find_chinese_data(uint8_t unicode_high, uint8_t unicode_low) {\n"
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text_output += " for (int i = 0; i < sizeof(Hzk) / sizeof(Chinese_t); ++i) {\n"
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text_output += " if (Hzk[i].unicode[0] == unicode_high && Hzk[i].unicode[1] == unicode_low) {\n"
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text_output += " return &Hzk[i];\n"
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text_output += " }\n"
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text_output += " }\n"
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text_output += " return NULL;\n"
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text_output += "}\n"
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return text_output
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def generate_and_write_chinese_array_output():
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# 生成包含汉字结构体的数组
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# simsun: 宋体
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# kaiti: 楷体
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# size = (20, 20)
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# size = (20, 20)
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size = (16, 16)
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chinese_array = generate_chinese_array("字库生成测试", 'simsun', size)
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# 将数组格式化为文本输出并写入文件
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text_output = format_chinese_array_as_text(chinese_array, size)
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with open('chinese_array_output.txt', 'w') as file:
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file.write(text_output)
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# 调用函数生成并写入汉字数组输出文件
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generate_and_write_chinese_array_output()
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def generate_unicode_bin_file():
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font = pilfont.truetype('simsun', size=16)
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with open('cao.bin', 'wb') as file:
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for char_code in range(0x4e00, 0xa000):
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result = generate_chinese_struct(chr(char_code), font)
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file.write(result)
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file.close()
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# 调用函数生成Unicode二进制文件
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# generate_unicode_bin_file()
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