#include #include #include #include #include #include int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t size) { if (size < 2) { return 0; } mrb_state *mrb = mrb_open(); if (!mrb) { return 0; } uint8_t selector = Data[0] % 4; const uint8_t *D = Data + 1; size_t S = size - 1; if (selector == 0) { /* Integer / BigInt */ if (S < 3) goto done; uint8_t base = D[0] % 37; if (base < 2 && base != 0) base = 10; uint8_t op = D[1] % 5; uint16_t split = D[2]; // Simplified split if (S > 3) split = split % (S - 3); else split = 0; mrb_value s1 = mrb_str_new(mrb, (const char *)(D + 3), split); mrb_value s2 = mrb_str_new(mrb, (const char *)(D + 3 + split), S - 3 - split); mrb_value b1 = mrb_funcall(mrb, mrb_obj_value(mrb->kernel_module), "Integer", 2, s1, mrb_fixnum_value(base)); mrb_value b2 = mrb_funcall(mrb, mrb_obj_value(mrb->kernel_module), "Integer", 2, s2, mrb_fixnum_value(base)); if (!mrb_nil_p(b1) && !mrb_nil_p(b2)) { switch (op) { case 0: mrb_funcall(mrb, b1, "+", 1, b2); break; case 1: mrb_funcall(mrb, b1, "-", 1, b2); break; case 2: mrb_funcall(mrb, b1, "*", 1, b2); break; case 3: if (mrb_test(mrb_funcall(mrb, b2, "!=", 1, mrb_fixnum_value(0)))) { mrb_funcall(mrb, b1, "/", 1, b2); } break; case 4: if (mrb_test(mrb_funcall(mrb, b2, "<", 1, mrb_fixnum_value(1000)))) { mrb_funcall(mrb, b1, "**", 1, b2); } break; } } } else if (selector == 1) { /* Rational */ if (S < 4) goto done; mrb_int n = (mrb_int)D[0] | ((mrb_int)D[1] << 8); mrb_int d = (mrb_int)D[2] | ((mrb_int)D[3] << 8); mrb_value r = mrb_funcall(mrb, mrb_obj_value(mrb->kernel_module), "Rational", 2, mrb_fixnum_value(n), mrb_fixnum_value(d)); if (S >= 8) { mrb_int n2 = (mrb_int)D[4] | ((mrb_int)D[5] << 8); mrb_int d2 = (mrb_int)D[6] | ((mrb_int)D[7] << 8); mrb_value r2 = mrb_funcall(mrb, mrb_obj_value(mrb->kernel_module), "Rational", 2, mrb_fixnum_value(n2), mrb_fixnum_value(d2)); mrb_funcall(mrb, r, "+", 1, r2); } } else if (selector == 2) { /* Complex */ if (S < 4) goto done; mrb_float re = (mrb_float)D[0]; mrb_float im = (mrb_float)D[1]; struct RClass *complex_class = mrb_class_get(mrb, "Complex"); if (complex_class) { mrb_value c = mrb_funcall(mrb, mrb_obj_value(mrb->kernel_module), "Complex", 2, mrb_float_value(mrb, re), mrb_float_value(mrb, im)); mrb_funcall(mrb, c, "abs", 0); } } else if (selector == 3) { /* Math functions */ if (S < 8) goto done; double d1; memcpy(&d1, D, sizeof(double)); struct RClass *math_module = mrb_module_get(mrb, "Math"); if (math_module) { mrb_value m = mrb_obj_value(math_module); mrb_funcall(mrb, m, "sin", 1, mrb_float_value(mrb, d1)); mrb_funcall(mrb, m, "log", 1, mrb_float_value(mrb, d1)); mrb_funcall(mrb, m, "sqrt", 1, mrb_float_value(mrb, d1)); } } done: mrb_close(mrb); return 0; }