tcc-xref
bellard 2002-09-08 22:13:54 +00:00
parent 3748975feb
commit 10f5d44f43
3 changed files with 29 additions and 26 deletions

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@ -12,7 +12,7 @@ CFLAGS+=-m386 -malign-functions=0
CFLAGS+=-DCONFIG_TCC_PREFIX=\"$(prefix)\"
DISAS=objdump -d
INSTALL=install
VERSION=0.9.11
VERSION=0.9.12
# run local version of tcc with local libraries and includes
TCC=./tcc -B. -I.

8
TODO
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@ -1,11 +1,12 @@
TODO list:
- To fix: 'sizeof' generates code if too complex expression is given.
- add gcc extension typeof()
- add gcc extension __alignof__()
- fix constant error msg
- add alloca()
- add typeof()
- add checks for multiple including of same file (= compile even faster)
- add 'CType' structure to optimize type handling (= compile even faster)
- suppress unneeded hash table for Symbols (= compile even faster)
- add alloca()
- ignore at least asm extension
- setjmp is not supported properly in bound checking.
- better local variables handling (needed for other targets)
@ -13,7 +14,6 @@ TODO list:
only for local arrays).
- To check: bound checking and float/long long/struct copy code. bound
checking and symbol + offset optimization
- To fix: 'sizeof' generate code if too complex expression is given.
- free all allocated data and use longjmp for errors (useful for libtcc use)
Not critical:

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@ -658,24 +658,20 @@ index (@code{REG_xxx} constants), but additionnal values and flags are
defined:
@example
#define VT_CONST 0x00f0 /* constant in vc
(must be first non register value) */
#define VT_LLOCAL 0x00f1 /* lvalue, offset on stack */
#define VT_LOCAL 0x00f2 /* offset on stack */
#define VT_CMP 0x00f3 /* the value is stored in processor flags (in vc) */
#define VT_JMP 0x00f4 /* value is the consequence of jmp true (even) */
#define VT_JMPI 0x00f5 /* value is the consequence of jmp false (odd) */
#define VT_LVAL 0x0100 /* var is an lvalue */
#define VT_FORWARD 0x0200 /* value is forward reference */
#define VT_MUSTCAST 0x0400 /* value must be casted to be correct (used for
char/short stored in integer registers) */
#define VT_MUSTBOUND 0x0800 /* bound checking must be done before
dereferencing value */
#define VT_BOUNDED 0x8000 /* value is bounded. The address of the
bounding function call point is in vc */
#define VT_LVAL_BYTE 0x1000 /* lvalue is a byte */
#define VT_LVAL_SHORT 0x2000 /* lvalue is a short */
#define VT_LVAL_UNSIGNED 0x4000 /* lvalue is unsigned */
#define VT_CONST 0x00f0
#define VT_LLOCAL 0x00f1
#define VT_LOCAL 0x00f2
#define VT_CMP 0x00f3
#define VT_JMP 0x00f4
#define VT_JMPI 0x00f5
#define VT_LVAL 0x0100
#define VT_SYM 0x0200
#define VT_MUSTCAST 0x0400
#define VT_MUSTBOUND 0x0800
#define VT_BOUNDED 0x8000
#define VT_LVAL_BYTE 0x1000
#define VT_LVAL_SHORT 0x2000
#define VT_LVAL_UNSIGNED 0x4000
#define VT_LVAL_TYPE (VT_LVAL_BYTE | VT_LVAL_SHORT | VT_LVAL_UNSIGNED)
@end example
@ -692,7 +688,10 @@ stack.
@item VT_CMP
indicates that the value is actually stored in the CPU flags (i.e. the
value is the consequence of a test). The value is either 0 or 1. The
actual CPU flags used is indicated in @code{SValue.c.i}.
actual CPU flags used is indicated in @code{SValue.c.i}.
If any code is generated which destroys the CPU flags, this value MUST be
put in a normal register.
@item VT_JMP
@itemx VT_JMPI
@ -702,6 +701,10 @@ indicates that the value is the consequence of a jmp. For VT_JMP, it is
These values are used to compile the @code{||} and @code{&&} logical
operators.
If any code is generated, this value MUST be put in a normal
register. Otherwise, the generated code won't be executed if the jump is
taken.
@item VT_LVAL
is a flag indicating that the value is actually an lvalue (left value of
an assignment). It means that the value stored is actually a pointer to
@ -724,8 +727,8 @@ ASAP because its semantics are rather complicated.
indicates that a cast to the value type must be performed if the value
is used (lazy casting).
@item VT_FORWARD
indicates that the value is a forward reference to a variable or a function.
@item VT_SYM
indicates that the symbol @code{SValue.sym} must be added to the constant.
@item VT_MUSTBOUND
@itemx VT_BOUNDED