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Add more detail in INC/X/Y testing
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@ -227,35 +227,95 @@ Test(mos6502_arith, dey)
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cr_assert_eq(cpu->P & MOS_ZERO, MOS_ZERO);
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}
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/*
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* The INC instruction works similarly to DEC; the same status flags are
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* updated. But, of course, we increment rather than decrement.
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*/
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Test(mos6502_arith, inc)
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{
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cpu->eff_addr = 123;
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mos6502_handle_inc(cpu, 55);
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cr_assert_eq(mos6502_get(cpu, 123), 56);
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vm_8bit main = 123,
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ntest = 0x7F,
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ztest = 0xFF;
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cpu->A = 8;
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cpu->eff_addr = 0;
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vm_16bit addr = 0x123;
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cpu->A = main;
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cpu->addr_mode = ACC;
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mos6502_handle_inc(cpu, 0);
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cr_assert_eq(cpu->A, 9);
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mos6502_handle_inc(cpu, main);
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cr_assert_eq(cpu->A, main + 1);
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cpu->A = 0xff;
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mos6502_handle_inc(cpu, 0);
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cr_assert_eq(cpu->A, 0);
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cpu->eff_addr = addr;
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cpu->addr_mode = ABS;
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mos6502_handle_inc(cpu, main);
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cr_assert_eq(mos6502_get(cpu, addr), main + 1);
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cr_assert_eq(cpu->P & MOS_NEGATIVE, 0);
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cr_assert_eq(cpu->P & MOS_ZERO, 0);
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mos6502_handle_inc(cpu, ntest);
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// Cast ntest - 1 so that the result we compare is 8-bit negative
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// and not 32-bit negative
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cr_assert_eq(mos6502_get(cpu, addr), (vm_8bit)(ntest + 1));
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cr_assert_eq(cpu->P & MOS_NEGATIVE, MOS_NEGATIVE);
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cr_assert_eq(cpu->P & MOS_ZERO, 0);
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mos6502_handle_inc(cpu, ztest);
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cr_assert_eq(mos6502_get(cpu, addr), (vm_8bit)(ztest + 1));
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cr_assert_eq(cpu->P & MOS_NEGATIVE, 0);
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cr_assert_eq(cpu->P & MOS_ZERO, MOS_ZERO);
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}
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Test(mos6502_arith, inx)
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{
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cpu->X = 5;
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mos6502_handle_inx(cpu, 0);
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cr_assert_eq(cpu->X, 6);
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vm_8bit main = 123,
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ntest = 0x7F,
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ztest = 0xFF;
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vm_16bit addr = 0x123;
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cpu->addr_mode = ACC;
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mos6502_handle_inx(cpu, main);
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cr_assert_eq(cpu->X, main + 1);
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cr_assert_eq(cpu->P & MOS_NEGATIVE, 0);
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cr_assert_eq(cpu->P & MOS_ZERO, 0);
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mos6502_handle_inx(cpu, ntest);
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// Cast ntest - 1 so that the result we compare is 8-bit negative
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// and not 32-bit negative
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cr_assert_eq(cpu->X, (vm_8bit)(ntest + 1));
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cr_assert_eq(cpu->P & MOS_NEGATIVE, MOS_NEGATIVE);
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cr_assert_eq(cpu->P & MOS_ZERO, 0);
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mos6502_handle_inx(cpu, ztest);
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cr_assert_eq(cpu->X, (vm_8bit)(ztest + 1));
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cr_assert_eq(cpu->P & MOS_NEGATIVE, 0);
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cr_assert_eq(cpu->P & MOS_ZERO, MOS_ZERO);
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}
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Test(mos6502_arith, iny)
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{
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cpu->Y = 5;
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mos6502_handle_iny(cpu, 0);
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cr_assert_eq(cpu->Y, 6);
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vm_8bit main = 123,
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ntest = 0x7F,
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ztest = 0xFF;
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vm_16bit addr = 0x123;
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cpu->addr_mode = ACC;
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mos6502_handle_iny(cpu, main);
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cr_assert_eq(cpu->Y, main + 1);
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cr_assert_eq(cpu->P & MOS_NEGATIVE, 0);
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cr_assert_eq(cpu->P & MOS_ZERO, 0);
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mos6502_handle_iny(cpu, ntest);
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// Cast ntest - 1 so that the result we compare is 8-bit negative
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// and not 32-bit negative
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cr_assert_eq(cpu->Y, (vm_8bit)(ntest + 1));
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cr_assert_eq(cpu->P & MOS_NEGATIVE, MOS_NEGATIVE);
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cr_assert_eq(cpu->P & MOS_ZERO, 0);
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mos6502_handle_iny(cpu, ztest);
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cr_assert_eq(cpu->Y, (vm_8bit)(ztest + 1));
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cr_assert_eq(cpu->P & MOS_NEGATIVE, 0);
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cr_assert_eq(cpu->P & MOS_ZERO, MOS_ZERO);
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}
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Test(mos6502_arith, sbc)
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