- added patch which fixed big/small endian problems on non-x86 host CPUs.
https://lists.berlios.de/pipermail/openocd-development/2008-February/000846.html (thanks to Øyvind for the patch) git-svn-id: svn://svn.berlios.de/openocd/trunk@313 b42882b7-edfa-0310-969c-e2dbd0fdcd60
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@ -19,10 +19,10 @@
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***************************************************************************/
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***************************************************************************/
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#ifndef TYPES_H
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#ifndef TYPES_H
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#define TYPES_H
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#define TYPES_H
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#ifdef HAVE_CONFIG_H
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#include "config.h"
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#endif
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#endif
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#ifndef u8
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#ifndef u8
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typedef unsigned char u8;
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typedef unsigned char u8;
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@ -40,53 +40,40 @@ typedef unsigned int u32;
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typedef unsigned long long u64;
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typedef unsigned long long u64;
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#endif
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#endif
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#ifdef WORDS_BIGENDIAN /* big endian host */
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#define le_to_h_u32(x) (u32)((x)[0] | (x)[1] << 8 | (x)[2] << 16 | (x)[3] << 24)
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#define le_to_h_u16(x) (u16)((x)[0] | (x)[1] << 8)
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#define be_to_h_u32(x) (*(u32*)(x))
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#define be_to_h_u16(x) (*(u16*)(x))
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#define h_u32_to_le(buf, val) \
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/* DANGER!!!! here be dragons! Note that the pointer in
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do { \
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* memory might be unaligned. On some CPU's, i.e. ARM7,
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(buf)[3] = ((val) & 0xff000000) >> 24; \
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* the 2 lsb are ignored for 32 bit access, on others
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(buf)[2] = ((val) & 0x00ff0000) >> 16; \
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* it will cause an exception and on e.g. x86, it works
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(buf)[1] = ((val) & 0x0000ff00) >> 8; \
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* the same as if aligned.
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(buf)[0] = ((val) & 0x000000ff); \
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*/
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} while (0)
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#define le_to_h_u32(x) ((u32)((x)[0] | (x)[1] << 8 | (x)[2] << 16 | (x)[3] << 24))
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#define le_to_h_u16(x) ((u16)((x)[0] | (x)[1] << 8))
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#define be_to_h_u32(x) ((u32)((x)[3] | (x)[2] << 8 | (x)[1] << 16 | (x)[0] << 24))
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#define be_to_h_u16(x) ((u16)((x)[1] | (x)[0] << 8))
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#define h_u16_to_le(buf, val) \
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#define h_u32_to_le(buf, val) do {\
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do { \
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(buf)[3] = ((val) & 0xff000000) >> 24;\
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(buf)[1] = ((val) & 0xff00) >> 8; \
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(buf)[2] = ((val) & 0x00ff0000) >> 16;\
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(buf)[0] = ((val) & 0x00ff); \
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(buf)[1] = ((val) & 0x0000ff00) >> 8;\
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} while (0)
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(buf)[0] = ((val) & 0x000000ff);\
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} while (0)
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#define h_u32_to_be(buf, val) do {\
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(buf)[0] = ((val) & 0xff000000) >> 24;\
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(buf)[1] = ((val) & 0x00ff0000) >> 16;\
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(buf)[2] = ((val) & 0x0000ff00) >> 8;\
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(buf)[3] = ((val) & 0x000000ff);\
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} while (0)
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#define h_u32_to_be(buf, val) do { *(u32*)(buf) = (val); } while (0)
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#define h_u16_to_le(buf, val) do {\
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#define h_u16_to_be(buf, val) do { *(u16*)(buf) = (val); } while (0)
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(buf)[1] = ((val) & 0xff00) >> 8;\
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(buf)[0] = ((val) & 0x00ff) >> 0;\
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} while (0)
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#define h_u16_to_be(buf, val) do {\
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(buf)[0] = ((val) & 0xff00) >> 8;\
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(buf)[1] = ((val) & 0x00ff) >> 0;\
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} while (0)
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#else /* little endian host */
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#define le_to_h_u32(x) (*(u32*)(x))
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#define le_to_h_u16(x) (*(u16*)(x))
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#define be_to_h_u32(x) (u32)((x)[3] | (x)[2] << 8 | (x)[1] << 16 | (x)[0] << 24)
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#define be_to_h_u16(x) (u16)((x)[1] | (x)[0] << 8)
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#define h_u32_to_le(buf, val) do { *(u32*)(buf) = (val); } while (0)
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#define h_u16_to_le(buf, val) do { *(u16*)(buf) = (val); } while (0)
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#define h_u32_to_be(buf, val) \
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do { \
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(buf)[0] = ((val) & 0xff000000) >> 24; \
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(buf)[1] = ((val) & 0x00ff0000) >> 16; \
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(buf)[2] = ((val) & 0x0000ff00) >> 8; \
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(buf)[3] = ((val) & 0x000000ff); \
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} while (0)
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#define h_u16_to_be(buf, val) \
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do { \
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(buf)[0] = ((val) & 0xff00) >> 8; \
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(buf)[1] = ((val) & 0x00ff); \
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} while (0)
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#endif
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#endif /* TYPES_H */
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#endif /* TYPES_H */
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