Bug was in integer_to_string; all tests now pass.
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@ -25,7 +25,7 @@
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/**
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* hexadecimal digits for printing numbers.
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*/
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const wchar_t *hex_digits = L"0123456789ABCDEF";
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const wchar_t hex_digits[16] = L"0123456789ABCDEF";
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/*
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* Doctrine from here on in is that ALL integers are bignums, it's just
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@ -68,6 +68,7 @@ long double numeric_value( struct cons_pointer pointer ) {
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*/
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struct cons_pointer make_integer( int64_t value, struct cons_pointer more ) {
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struct cons_pointer result = NIL;
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debug_print(L"Entering make_integer\n", DEBUG_ARITH);
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if ( integerp( more ) || nilp( more ) ) {
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result = allocate_cell( INTEGERTAG );
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@ -75,9 +76,10 @@ struct cons_pointer make_integer( int64_t value, struct cons_pointer more ) {
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cell->payload.integer.value = value;
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cell->payload.integer.more = more;
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debug_dump_object( result, DEBUG_ARITH );
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}
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debug_print(L"make_integer: returning\n", DEBUG_ARITH);
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debug_dump_object( result, DEBUG_ARITH );
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return result;
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}
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@ -87,11 +89,19 @@ struct cons_pointer make_integer( int64_t value, struct cons_pointer more ) {
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*/
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struct cons_pointer add_integers( struct cons_pointer a,
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struct cons_pointer b ) {
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debug_print(L"Entering add_integers\n", DEBUG_ARITH);
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struct cons_pointer result = NIL;
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int64_t carry = 0;
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if ( integerp( a ) && integerp( b ) ) {
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while ( !nilp( a ) || !nilp( b ) || carry != 0 ) {
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while ( !nilp( a ) || !nilp( b ) || carry != 0 ) {
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debug_print(L"add_integers: ", DEBUG_ARITH);
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debug_print_object(a, DEBUG_ARITH);
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debug_print(L" x ", DEBUG_ARITH);
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debug_print_object(b, DEBUG_ARITH);
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debug_printf(DEBUG_ARITH, L"; carry = %ld\n", carry);
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int64_t av =
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integerp( a ) ? pointer2cell( a ).payload.integer.value : 0;
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int64_t bv =
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@ -100,6 +110,7 @@ struct cons_pointer add_integers( struct cons_pointer a,
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__int128_t rv = av + bv + carry;
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if ( rv > LONG_MAX || rv < LONG_MIN ) {
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debug_printf( DEBUG_ARITH, L"add_integers: 64 bit overflow; setting carry to %ld\n", carry);
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carry = llabs( rv / LONG_MAX );
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rv = rv % LONG_MAX;
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} else {
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@ -111,6 +122,9 @@ struct cons_pointer add_integers( struct cons_pointer a,
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b = pointer2cell( b ).payload.integer.more;
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}
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}
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debug_print(L"add_integers returning: ", DEBUG_ARITH);
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debug_print_object(result, DEBUG_ARITH);
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debug_println(DEBUG_ARITH);
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return result;
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}
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@ -178,11 +192,20 @@ struct cons_pointer integer_to_string( struct cons_pointer int_pointer,
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bool is_negative = accumulator < 0;
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accumulator = llabs( accumulator );
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if (accumulator == 0) {
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result = c_string_to_lisp_string( L"0");
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} else {
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while ( accumulator > 0 ) {
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while ( accumulator > base ) {
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result = make_string( hex_digits[accumulator % base], result );
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debug_printf(DEBUG_ARITH, L"integer_to_string: accumulator is %ld\n:",
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accumulator);
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do {
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debug_printf(DEBUG_ARITH, L"integer_to_string: digit is %ld, hexadecimal is %lc\n:",
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accumulator % base, hex_digits[accumulator % base]);
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wint_t digit = (wint_t)hex_digits[accumulator % base];
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result = make_string( (wint_t)hex_digits[accumulator % base], result );
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accumulator = accumulator / base;
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}
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} while ( accumulator > base );
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if ( integerp( integer.payload.integer.more ) ) {
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integer = pointer2cell( integer.payload.integer.more );
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@ -190,7 +213,7 @@ struct cons_pointer integer_to_string( struct cons_pointer int_pointer,
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/* TODO: I don't believe it's as simple as this! */
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accumulator += ( base * ( i % base ) );
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result = make_string( hex_digits[accumulator % base], result );
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result = make_string( (wint_t)hex_digits[accumulator % base], result );
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accumulator += ( base * ( i / base ) );
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}
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}
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@ -198,6 +221,7 @@ struct cons_pointer integer_to_string( struct cons_pointer int_pointer,
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if ( is_negative ) {
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result = make_string( L'-', result );
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}
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}
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return result;
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}
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