This previously resulted in an ICE: cc65: Check failed: (Entry->Type->C & T_MASK_SIGN) == T_SIGN_SIGNED, file 'cc65/symtab.c', line 874 This CHECK is in the code that deals with changing `int` bitfields to `unsigned int`. Work around this by treating enum bit-fields as having their signedness specified, so this type change code does not get called. Fixes #1244.
158 lines
4 KiB
C
158 lines
4 KiB
C
/*
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Copyright 2020 The cc65 Authors
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This software is provided 'as-is', without any express or implied
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warranty. In no event will the authors be held liable for any damages
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arising from the use of this software.
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Permission is granted to anyone to use this software for any purpose,
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including commercial applications, and to alter it and redistribute it
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freely, subject to the following restrictions:
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1. The origin of this software must not be misrepresented; you must not
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claim that you wrote the original software. If you use this software
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in a product, an acknowledgment in the product documentation would be
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appreciated but is not required.
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2. Altered source versions must be plainly marked as such, and must not be
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misrepresented as being the original software.
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3. This notice may not be removed or altered from any source distribution.
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*/
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/*
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Tests of enum bit-fields; see https://github.com/cc65/cc65/issues/1244
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*/
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#include <stdio.h>
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static unsigned char failures = 0;
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/* Enum with underlying type unsigned int. */
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enum e10u {
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E10U_200 = 200,
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E10U_1000 = 1000,
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};
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static struct enum_bitfield_uint {
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enum e10u x : 1;
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enum e10u y : 8;
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enum e10u z : 16;
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} e10ubf = {0, E10U_200, E10U_1000};
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static void test_enum_bitfield_uint(void)
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{
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if (sizeof (struct enum_bitfield_uint) != 4) {
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printf ("Got sizeof(struct enum_bitfield_uint) = %zu, expected 4.\n",
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sizeof(struct enum_bitfield_uint));
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failures++;
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}
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if (e10ubf.x != 0) {
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printf ("Got e10ubf.x = %u, expected 0.\n", e10ubf.x);
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failures++;
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}
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if (e10ubf.y != 200) {
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printf ("Got e10ubf.y = %u, expected 200.\n", e10ubf.y);
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failures++;
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}
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if (e10ubf.z != 1000) {
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printf ("Got e10ubf.z = %u, expected 1000.\n", e10ubf.z);
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failures++;
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}
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e10ubf.x = 1;
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e10ubf.y = 17;
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e10ubf.z = 1023;
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if (e10ubf.x != 1) {
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printf ("Got e10ubf.x = %u, expected 1.\n", e10ubf.x);
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failures++;
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}
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/* Check signedness, should be unsigned. */
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{
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long v = e10ubf.x - 2;
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if (v < 0) {
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printf ("Got negative v = %ld, expected large positive.\n", v);
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failures++;
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}
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}
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if (e10ubf.y != 17) {
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printf ("Got e10ubf.y = %u, expected 17.\n", e10ubf.y);
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failures++;
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}
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if (e10ubf.z != 1023) {
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printf ("Got e10ubf.z = %u, expected 1023.\n", e10ubf.z);
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failures++;
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}
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}
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/* Enum with underlying type signed int. */
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enum e11i {
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E11I_M1 = -1,
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E11I_100 = 100,
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E11I_1000 = 1000,
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};
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static struct enum_bitfield_int {
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enum e11i x : 2;
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enum e11i y : 8;
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enum e11i z : 16;
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} e11ibf = {E11I_M1, E11I_100, E11I_1000};
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static void test_enum_bitfield_int(void)
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{
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if (sizeof (struct enum_bitfield_int) != 4) {
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printf ("Got sizeof(struct enum_bitfield_int) = %zu, expected 4.\n",
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sizeof(struct enum_bitfield_int));
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failures++;
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}
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if (e11ibf.x != -1) {
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printf ("Got e11ibf.x = %d, expected -1.\n", e11ibf.x);
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failures++;
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}
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if (e11ibf.y != 100) {
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printf ("Got e11ibf.y = %d, expected 100.\n", e11ibf.y);
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failures++;
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}
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if (e11ibf.z != 1000) {
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printf ("Got e11ibf.z = %d, expected 1000.\n", e11ibf.z);
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failures++;
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}
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e11ibf.x = 1;
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e11ibf.y = 17;
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e11ibf.z = 1023;
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if (e11ibf.x != 1) {
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printf ("Got e11ibf.x = %d, expected 1.\n", e11ibf.x);
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failures++;
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}
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/* Check signedness, should be signed. */
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{
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long v = e11ibf.x - 2;
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if (v > 0) {
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printf ("Got positive v = %ld, expected negative.\n", v);
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failures++;
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}
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}
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if (e11ibf.y != 17) {
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printf ("Got e11ibf.y = %d, expected 17.\n", e11ibf.y);
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failures++;
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}
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if (e11ibf.z != 1023) {
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printf ("Got e11ibf.z = %d, expected 1023.\n", e11ibf.z);
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failures++;
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}
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}
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int main(void)
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{
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test_enum_bitfield_uint();
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test_enum_bitfield_int();
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printf("failures: %u\n", failures);
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return failures;
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}
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