ANSIfy libc/quad
Some of these routines exist in both lib/libc/quad/ and sys/libkern/. r325988 ANSIfied sys/libkern. Update libc/quad to match. PR: 223641 Reported by: bde Sponsored by: The FreeBSD Foundation
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@ -47,8 +47,7 @@ __FBSDID("$FreeBSD$");
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* either x or y (the choice to compare with x or y is arbitrary).
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*/
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quad_t
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__adddi3(a, b)
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quad_t a, b;
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__adddi3(quad_t a, quad_t b)
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{
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union uu aa, bb, sum;
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@ -45,8 +45,7 @@ __FBSDID("$FreeBSD$");
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* Return a & b, in quad.
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*/
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quad_t
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__anddi3(a, b)
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quad_t a, b;
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__anddi3(quad_t a, quad_t b)
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{
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union uu aa, bb;
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@ -46,9 +46,7 @@ __FBSDID("$FreeBSD$");
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* This is the same as logical shift left!
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*/
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quad_t
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__ashldi3(a, shift)
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quad_t a;
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qshift_t shift;
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__ashldi3(quad_t a, qshift_t shift)
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{
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union uu aa;
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@ -45,9 +45,7 @@ __FBSDID("$FreeBSD$");
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* Shift a (signed) quad value right (arithmetic shift right).
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*/
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quad_t
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__ashrdi3(a, shift)
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quad_t a;
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qshift_t shift;
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__ashrdi3(quad_t a, qshift_t shift)
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{
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union uu aa;
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@ -47,8 +47,7 @@ __FBSDID("$FreeBSD$");
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* signed.
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*/
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int
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__cmpdi2(a, b)
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quad_t a, b;
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__cmpdi2(quad_t a, quad_t b)
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{
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union uu aa, bb;
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@ -46,8 +46,7 @@ __FBSDID("$FreeBSD$");
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* ??? if -1/2 should produce -1 on this machine, this code is wrong
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*/
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quad_t
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__divdi3(a, b)
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quad_t a, b;
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__divdi3(quad_t a, quad_t b)
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{
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u_quad_t ua, ub, uq;
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int neg;
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@ -46,8 +46,7 @@ __FBSDID("$FreeBSD$");
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* We clamp anything that is out of range.
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*/
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quad_t
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__fixdfdi(x)
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double x;
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__fixdfdi(double x)
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{
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if (x < 0)
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if (x <= QUAD_MIN)
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@ -51,8 +51,7 @@ __FBSDID("$FreeBSD$");
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* of range becomes UQUAD_MAX.
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*/
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u_quad_t
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__fixunsdfdi(x)
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double x;
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__fixunsdfdi(double x)
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{
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double toppart;
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union uu t;
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@ -45,8 +45,7 @@ __FBSDID("$FreeBSD$");
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* Convert (signed) quad to double.
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*/
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double
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__floatdidf(x)
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quad_t x;
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__floatdidf(quad_t x)
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{
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double d;
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union uu u;
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@ -45,8 +45,7 @@ __FBSDID("$FreeBSD$");
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* Convert (signed) quad to float.
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*/
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float
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__floatdisf(x)
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quad_t x;
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__floatdisf(quad_t x)
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{
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float f;
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union uu u;
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@ -46,8 +46,7 @@ __FBSDID("$FreeBSD$");
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* This is exactly like floatdidf.c except that negatives never occur.
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*/
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double
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__floatunsdidf(x)
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u_quad_t x;
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__floatunsdidf(u_quad_t x)
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{
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double d;
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union uu u;
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@ -45,8 +45,7 @@ __FBSDID("$FreeBSD$");
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* Return a | b, in quad.
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*/
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quad_t
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__iordi3(a, b)
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quad_t a, b;
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__iordi3(quad_t a, quad_t b)
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{
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union uu aa, bb;
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@ -46,9 +46,7 @@ __FBSDID("$FreeBSD$");
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* This is the same as arithmetic shift left!
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*/
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quad_t
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__lshldi3(a, shift)
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quad_t a;
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qshift_t shift;
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__lshldi3(quad_t a, qshift_t shift)
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{
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union uu aa;
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@ -45,9 +45,7 @@ __FBSDID("$FreeBSD$");
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* Shift an (unsigned) quad value right (logical shift right).
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*/
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quad_t
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__lshrdi3(a, shift)
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quad_t a;
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qshift_t shift;
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__lshrdi3(quad_t a, qshift_t shift)
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{
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union uu aa;
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@ -48,8 +48,7 @@ __FBSDID("$FreeBSD$");
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* If -1/2 should produce -1 on this machine, this code is wrong.
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*/
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quad_t
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__moddi3(a, b)
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quad_t a, b;
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__moddi3(quad_t a, quad_t b)
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{
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u_quad_t ua, ub, ur;
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int neg;
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@ -101,8 +101,7 @@ __FBSDID("$FreeBSD$");
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static quad_t __lmulq(u_long, u_long);
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quad_t
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__muldi3(a, b)
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quad_t a, b;
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__muldi3(quad_t a, quad_t b)
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{
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union uu u, v, low, prod;
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u_long high, mid, udiff, vdiff;
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@ -45,8 +45,7 @@ __FBSDID("$FreeBSD$");
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* Return -a (or, equivalently, 0 - a), in quad. See subdi3.c.
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*/
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quad_t
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__negdi2(a)
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quad_t a;
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__negdi2(quad_t a)
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{
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union uu aa, res;
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@ -46,8 +46,7 @@ __FBSDID("$FreeBSD$");
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* than `not'.
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*/
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quad_t
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__one_cmpldi2(a)
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quad_t a;
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__one_cmpldi2(quad_t a)
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{
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union uu aa;
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@ -82,8 +82,7 @@ shl(digit *p, int len, int sh)
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* leading zeros).
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*/
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u_quad_t
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__qdivrem(uq, vq, arq)
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u_quad_t uq, vq, *arq;
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__qdivrem(u_quad_t uq, u_quad_t vq, u_quad_t *arq)
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{
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union uu tmp;
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digit *u, *v, *q;
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* from a single u_long difference x-y occurs if and only if (x-y) > x.
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*/
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quad_t
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__subdi3(a, b)
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quad_t a, b;
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__subdi3(quad_t a, quad_t b)
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{
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union uu aa, bb, diff;
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* Neither a nor b are considered signed.
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*/
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int
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__ucmpdi2(a, b)
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u_quad_t a, b;
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__ucmpdi2(u_quad_t a, u_quad_t b)
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{
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union uu aa, bb;
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* Divide two unsigned quads.
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*/
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u_quad_t
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__udivdi3(a, b)
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u_quad_t a, b;
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__udivdi3(u_quad_t a, u_quad_t b)
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{
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return (__qdivrem(a, b, (u_quad_t *)0));
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* Return remainder after dividing two unsigned quads.
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*/
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u_quad_t
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__umoddi3(a, b)
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u_quad_t a, b;
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__umoddi3(u_quad_t a, u_quad_t b)
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{
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u_quad_t r;
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* Return a ^ b, in quad.
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*/
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quad_t
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__xordi3(a, b)
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quad_t a, b;
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__xordi3(quad_t a, quad_t b)
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{
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union uu aa, bb;
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