1 - Added void.
2 - Data and function pointers have the same size.
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@ -133,6 +133,8 @@ properties of the Ack-C frontend.
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.IT "2.2 Identifiers"
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External identifiers are unique up to 7 characters and allow
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both upper and lower case.
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.IT "2.3 Keywords"
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The word \fBvoid\fP is also reserved as a keyword.
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.IT "2.4.3 Character constants"
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The ASCII-mapping is used when a character is converted to an
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integer.
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@ -140,11 +142,12 @@ integer.
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To prevent loss of precision the compiler does not perform
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floating point constant folding.
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.IT "2.6 Hardware characteristics"
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The size of objects of the several arithmetic types and the two
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pointer types depend on the EM-implementation used.
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The size of objects of the several arithmetic types and
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pointers depend on the EM-implementation used.
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The ranges of the arithmetic types depend on the size used,
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the C-frontend assumes two's complement representation for the
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integral types. All sizes are multiples of bytes.
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integral types.
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All sizes are multiples of bytes.
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The calling program \fIack\fP[4] passes information about the
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size of the types to the compiler proper.
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.br
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@ -152,32 +155,27 @@ However, a few general remarks must be made:
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.sp 1
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.IS
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.PT (a)
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Two different pointer types exist: pointers to data and
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pointers to functions.
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The latter type is twice as large as the former.
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Pointers to functions use the same format as Pascal procedure
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parameters, thereby allowing C to use Pascal procedure
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parameters and vice-versa.
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The extra information passed indicates the scope level of the
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procedure.
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.PT (b)
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The size of pointers to data is a multiple of
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The size of pointers is a multiple of
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(or equal to) the size of an \fIint\fP.
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.PT (c)
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.PT (b)
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The following relations exist for the sizes of the types
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mentioned:
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.br
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.ti +5
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\fIchar<=short<=int<=long\fP
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.PT (d)
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.PT (c)
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Objects of type \fIchar\fP use one 8-bit byte of storage,
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although several bytes are allocated sometimes.
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.PT (e)
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.PT (d)
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All sizes are in multiples of bytes.
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.PT (f)
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.PT (e)
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Most EM implementations use 4 bytes for floats and 8 bytes
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for doubles, but exceptions to this rule occur.
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.IE
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.IT "4 What's in a name"
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The type \fIvoid\fP is added.
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Objects of type void do not exist.
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Functions declared as returning void, do not return a value at all.
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.IT "6.1 Characters and integers"
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Objects of type \fIchar\fP are unsigned and do not cause
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sign-extension when converted to \fIint\fP.
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@ -187,8 +185,16 @@ Floating point numbers are truncated towards zero when
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converted to the integral types.
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.IT "6.4 Pointers and integers"
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When a \fIlong\fP is added to or subtracted from a pointer and
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longs are larger then data pointers the \fIlong\fP is converted to an
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longs are larger then pointers the \fIlong\fP is converted to an
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\fIint\fP before the operation is performed.
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.IT "7.2 Unary operators"
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It is allowed to cast any expression to the type \fIvoid\fP.
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.IT "8.2 Type specifiers"
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One type is added to the type-specifiers:
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.br
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.IS
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void
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.IE
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.IT "8.5 Structure and union declarations"
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The only type allowed for fields is \fIint\fP.
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Fields with exactly the size of \fIint\fP are signed,
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@ -200,8 +206,15 @@ Initialization of structures containing bit fields is not
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allowed.
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There is one restriction when using an 'address expression' to initialize
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an integral variable.
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The integral variable must have the size of a data pointer.
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The integral variable must have the same size as a pointer.
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Conversions altering the size of the address expression are not allowed.
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.IT "9.10 Return statement"
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Return statements of the form:
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.IS
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return ;
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.IE
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are the only form of return statement allowed in a function of type
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function returning void.
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.IT "10.1 External function definitions"
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The total amount for storage used for parameters
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in any function must be less then 4096 bytes.
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@ -227,15 +240,8 @@ int and back will not always result in the same pointer.
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The process mentioned above works with integrals
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of the same size or larger as pointers in all EM implementations
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having such integrals.
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Note that pointers to functions have
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twice the size of pointers to data.
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When converting data pointers to an integral type or vice-versa,
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the pointers is seen as an unsigned with the same size a data-pointer.
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When converting function pointers to anything else the static link part
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of the pointer is discarded,
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the resulting value is treated as if it were a data pointer.
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When converting a data pointer or object of integral type to a function pointer
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a static link with the value 0 is added to complete the function pointer.
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When converting pointers to an integral type or vice-versa,
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the pointers is seen as an unsigned int.
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.br
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EM guarantees that any object can be placed at a word boundary,
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this allows the C-programs to use \fIint\fP pointers
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