| /freebsd-13.1/crypto/openssl/crypto/ec/ |
| H A D | ec_oct.c | 27 if (!ec_point_is_compat(point, group)) { in EC_POINT_set_compressed_coordinates() 48 return group->meth->point_set_compressed_coordinates(group, point, x, in EC_POINT_set_compressed_coordinates() 70 size_t EC_POINT_point2oct(const EC_GROUP *group, const EC_POINT *point, in EC_POINT_point2oct() argument 79 if (!ec_point_is_compat(point, group)) { in EC_POINT_point2oct() 93 return ec_GF2m_simple_point2oct(group, point, in EC_POINT_point2oct() 98 return group->meth->point2oct(group, point, form, buf, len, ctx); in EC_POINT_point2oct() 101 int EC_POINT_oct2point(const EC_GROUP *group, EC_POINT *point, in EC_POINT_oct2point() argument 109 if (!ec_point_is_compat(point, group)) { in EC_POINT_oct2point() 126 return group->meth->oct2point(group, point, buf, len, ctx); in EC_POINT_oct2point() 136 len = EC_POINT_point2oct(group, point, form, NULL, 0, NULL); in EC_POINT_point2buf() [all …]
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| H A D | ec2_smpl.c | 215 point->X = BN_new(); in ec_GF2m_simple_point_init() 216 point->Y = BN_new(); in ec_GF2m_simple_point_init() 217 point->Z = BN_new(); in ec_GF2m_simple_point_init() 219 if (point->X == NULL || point->Y == NULL || point->Z == NULL) { in ec_GF2m_simple_point_init() 231 BN_free(point->X); in ec_GF2m_simple_point_finish() 232 BN_free(point->Y); in ec_GF2m_simple_point_finish() 233 BN_free(point->Z); in ec_GF2m_simple_point_finish() 271 BN_zero(point->Z); in ec_GF2m_simple_point_set_to_infinity() 472 if (EC_POINT_is_at_infinity(group, point) || BN_is_zero(point->Y)) in ec_GF2m_simple_invert() 478 return BN_GF2m_add(point->Y, point->X, point->Y); in ec_GF2m_simple_invert() [all …]
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| H A D | ec_lib.c | 680 void EC_POINT_free(EC_POINT *point) in EC_POINT_free() argument 682 if (!point) in EC_POINT_free() 686 point->meth->point_finish(point); in EC_POINT_free() 687 OPENSSL_free(point); in EC_POINT_free() 692 if (!point) in EC_POINT_clear_free() 696 point->meth->point_clear_finish(point); in EC_POINT_clear_free() 698 point->meth->point_finish(point); in EC_POINT_clear_free() 699 OPENSSL_clear_free(point, sizeof(*point)); in EC_POINT_clear_free() 741 return point->meth; in EC_POINT_method_of() 751 if (group->meth != point->meth) { in EC_POINT_set_to_infinity() [all …]
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| H A D | ec_print.c | 15 const EC_POINT *point, in EC_POINT_point2bn() argument 22 buf_len = EC_POINT_point2buf(group, point, form, &buf, ctx); in EC_POINT_point2bn() 35 const BIGNUM *bn, EC_POINT *point, BN_CTX *ctx) in EC_POINT_bn2point() argument 53 if (point == NULL) { in EC_POINT_bn2point() 59 ret = point; in EC_POINT_bn2point() 62 if (ret != point) in EC_POINT_bn2point() 76 const EC_POINT *point, in EC_POINT_point2hex() argument 83 buf_len = EC_POINT_point2buf(group, point, form, &buf, ctx); in EC_POINT_point2hex() 108 const char *buf, EC_POINT *point, BN_CTX *ctx) in EC_POINT_hex2point() argument 116 ret = EC_POINT_bn2point(group, tmp_bn, point, ctx); in EC_POINT_hex2point()
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| H A D | ecp_smpl.c | 322 if (point->X == NULL || point->Y == NULL || point->Z == NULL) { in ec_GFp_simple_point_init() 333 BN_free(point->X); in ec_GFp_simple_point_finish() 334 BN_free(point->Y); in ec_GFp_simple_point_finish() 335 BN_free(point->Z); in ec_GFp_simple_point_finish() 364 BN_zero(point->Z); in ec_GFp_simple_point_set_to_infinity() 388 if (!group->meth->field_encode(group, point->X, point->X, ctx)) in ec_GFp_simple_set_Jprojective_coordinates_GFp() 414 meth->field_encode(group, point->Z, point->Z, ctx)) in ec_GFp_simple_set_Jprojective_coordinates_GFp() 532 Z_ = point->Z; in ec_GFp_simple_point_get_affine_coordinates() 938 if (EC_POINT_is_at_infinity(group, point) || BN_is_zero(point->Y)) in ec_GFp_simple_invert() 942 return BN_usub(point->Y, group->field, point->Y); in ec_GFp_simple_invert() [all …]
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| H A D | ec_check.c | 18 EC_POINT *point = NULL; in EC_GROUP_check() local 49 if ((point = EC_POINT_new(group)) == NULL) in EC_GROUP_check() 59 if (!EC_POINT_mul(group, point, order, NULL, NULL, ctx)) in EC_GROUP_check() 61 if (!EC_POINT_is_at_infinity(group, point)) { in EC_GROUP_check() 70 EC_POINT_free(point); in EC_GROUP_check()
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| H A D | ec2_oct.c | 34 EC_POINT *point, in ec_GF2m_simple_set_compressed_coordinates() argument 97 if (!EC_POINT_set_affine_coordinates(group, point, x, y, ctx)) in ec_GF2m_simple_set_compressed_coordinates() 113 size_t ec_GF2m_simple_point2oct(const EC_GROUP *group, const EC_POINT *point, in ec_GF2m_simple_point2oct() argument 130 if (EC_POINT_is_at_infinity(group, point)) { in ec_GF2m_simple_point2oct() 169 if (!EC_POINT_get_affine_coordinates(group, point, x, y, ctx)) in ec_GF2m_simple_point2oct() 235 int ec_GF2m_simple_oct2point(const EC_GROUP *group, EC_POINT *point, in ec_GF2m_simple_oct2point() argument 283 return EC_POINT_set_to_infinity(group, point); in ec_GF2m_simple_oct2point() 318 if (!EC_POINT_set_compressed_coordinates(group, point, x, y_bit, ctx)) in ec_GF2m_simple_oct2point() 352 if (!EC_POINT_set_affine_coordinates(group, point, x, y, ctx)) in ec_GF2m_simple_oct2point()
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| H A D | ecp_oct.c | 17 EC_POINT *point, in ec_GFp_simple_set_compressed_coordinates() argument 143 if (!EC_POINT_set_affine_coordinates(group, point, x, y, ctx)) in ec_GFp_simple_set_compressed_coordinates() 154 size_t ec_GFp_simple_point2oct(const EC_GROUP *group, const EC_POINT *point, in ec_GFp_simple_point2oct() argument 171 if (EC_POINT_is_at_infinity(group, point)) { in ec_GFp_simple_point2oct() 209 if (!EC_POINT_get_affine_coordinates(group, point, x, y, ctx)) in ec_GFp_simple_point2oct() 269 int ec_GFp_simple_oct2point(const EC_GROUP *group, EC_POINT *point, in ec_GFp_simple_oct2point() argument 303 return EC_POINT_set_to_infinity(group, point); in ec_GFp_simple_oct2point() 336 if (!EC_POINT_set_compressed_coordinates(group, point, x, y_bit, ctx)) in ec_GFp_simple_oct2point() 356 if (!EC_POINT_set_affine_coordinates(group, point, x, y, ctx)) in ec_GFp_simple_oct2point()
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| /freebsd-13.1/contrib/llvm-project/llvm/lib/Target/RISCV/ |
| H A D | RISCVSchedule.td | 53 def WriteFSqrt16 : SchedWrite; // 16-bit floating point sqrt 54 def WriteFSqrt32 : SchedWrite; // 32-bit floating point sqrt 55 def WriteFSqrt64 : SchedWrite; // 64-bit floating point sqrt 101 def WriteFLD16 : SchedWrite; // Floating point sp load 102 def WriteFLD32 : SchedWrite; // Floating point sp load 103 def WriteFLD64 : SchedWrite; // Floating point dp load 104 def WriteFST16 : SchedWrite; // Floating point sp store 105 def WriteFST32 : SchedWrite; // Floating point sp store 106 def WriteFST64 : SchedWrite; // Floating point dp store 145 def ReadFSqrt16 : SchedRead; // 16-bit floating point sqrt [all …]
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| /freebsd-13.1/crypto/openssl/crypto/x509v3/ |
| H A D | v3_crld.c | 210 if (point == NULL) in crldp_from_section() 225 if (!point->CRLissuer) in crldp_from_section() 230 return point; in crldp_from_section() 233 DIST_POINT_free(point); in crldp_from_section() 251 DIST_POINT *point; in v2i_crld() local 261 if (!point) in v2i_crld() 278 point->distpoint->type = 0; in v2i_crld() 463 DIST_POINT *point; in i2r_crldp() local 468 if (point->distpoint) in i2r_crldp() 470 if (point->reasons) in i2r_crldp() [all …]
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| /freebsd-13.1/contrib/llvm-project/llvm/lib/Target/X86/ |
| H A D | X86Schedule.td | 23 // integer unit to the floating point unit. 213 // Floating point. This covers both scalar and vector operations. 238 defm WriteFAdd : X86SchedWritePair<ReadAfterVecLd>; // Floating point add/sub. 239 defm WriteFAddX : X86SchedWritePair<ReadAfterVecXLd>; // Floating point add/sub (XMM). 240 defm WriteFAddY : X86SchedWritePair<ReadAfterVecYLd>; // Floating point add/sub (YMM). 241 defm WriteFAddZ : X86SchedWritePair<ReadAfterVecYLd>; // Floating point add/sub (ZMM). 246 defm WriteFCmp : X86SchedWritePair<ReadAfterVecLd>; // Floating point compare. 264 defm WriteFDiv : X86SchedWritePair<ReadAfterVecLd>; // Floating point division. 272 defm WriteFSqrt : X86SchedWritePair<ReadAfterVecLd>; // Floating point square root. 297 defm WriteFSign : X86SchedWritePair<ReadAfterVecLd>; // Floating point fabs/fchs. [all …]
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| H A D | X86ScheduleZnver3.td | 27 // outstanding operations (integer, load/store, and floating-point) and is 185 // The processor uses <...> two decoupled independent floating point schedulers 194 // Agner, 22.10 Floating point execution pipes 195 // There are six floating point/vector execution pipes, 270 // Stores and floating point to general purpose register transfer 294 // Stores and floating point to general purpose register transfer 336 // The floating point register file has 160 vector registers 344 // The floating-point scheduler has a 2*32 entry macro op capacity. 356 // even if floating-point scheduler is full. 867 // Floating point. This covers both scalar and vector operations. [all …]
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| /freebsd-13.1/contrib/ntp/scripts/build/ |
| H A D | UpdatePoint | 117 case "$point" in 131 case "$betapoint::$rcpoint::$point" in 229 case "$repo::$bp::$point" in 231 newpoint=$point 234 newpoint=`expr $point + 1` 237 newpoint=`expr $point + 1` 248 *) echo "Unexpected value for 'point' <$point>! (repo::bp::point is $repo::$bp::$point)" 309 printf "point $point" 311 $point)
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| H A D | VersionName | 22 case "$repotype::$point" in 26 NAME="${NAME}p${point}" 35 NAME="${NAME}p${point}" 37 *) NAME="${NAME}.${point}" 43 *) echo "Unexpected value for 'point' <$point>! (repotype is <$repotype>)"
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| /freebsd-13.1/contrib/ee/ |
| H A D | ee.c | 728 point++; 735 point++; 1399 point++; in prevline() 1414 point--; 3954 if ((*point == ' ') || (*point == '\t')) in Format() 4013 if ((*point == ' ') || (*point == '\t')) in Format() 4027 if ((*point == ' ') && (*(point + 1) == ' ')) in Format() 4040 if ((*point == '.') && (*(point + 1) == ' ')) in Format() 4548 if ((*point == ' ') || (*point == '\t')) in Auto_Format() 4616 if ((*point == ' ') || (*point == '\t')) in Auto_Format() [all …]
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| /freebsd-13.1/contrib/bmake/unit-tests/ |
| H A D | export-variants.mk | 12 . warning At this point, no variable should be exported. 16 . warning At this point, no variable should be exported. 20 . warning At this point, no variable should be exported. 28 . warning At this point, a single variable should be exported. 32 . warning At this point, a single variable should be exported. 36 . warning At this point, a single variable should be exported.
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| /freebsd-13.1/crypto/openssl/doc/man3/ |
| H A D | EC_POINT_new.pod | 37 void EC_POINT_free(EC_POINT *point); 38 void EC_POINT_clear_free(EC_POINT *point); 41 const EC_METHOD *EC_POINT_method_of(const EC_POINT *point); 42 int EC_POINT_set_to_infinity(const EC_GROUP *group, EC_POINT *point); 100 An B<EC_POINT> structure represents a point on a curve. A new point is 102 B<group> object that the point relates to. 105 if B<point> is NULL nothing is done. 108 then frees its memory. If B<point> is NULL nothing is done. 118 A valid point on a curve is the special point at infinity. A point is set to 121 The affine co-ordinates for a point describe a point in terms of its x and y [all …]
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| H A D | EC_POINT_add.pod | 16 int EC_POINT_is_on_curve(const EC_GROUP *group, const EC_POINT *point, BN_CTX *ctx); 18 int EC_POINT_make_affine(const EC_GROUP *group, EC_POINT *point, BN_CTX *ctx); 31 …nd B<b> and places the result in B<r>. Similarly EC_POINT_dbl doubles the point B<a> and places the 34 EC_POINT_invert calculates the inverse of the supplied point B<a>. The result is placed back in B<a… 36 The function EC_POINT_is_at_infinity tests whether the supplied point is at infinity or not. 38 EC_POINT_is_on_curve tests whether the supplied point is on the curve or not. 47 … point multiplication). Alternatively, both B<q> and B<m> may be NULL, and B<n> non-NULL, in which… 51 When performing a fixed point multiplication (B<n> is non-NULL and B<num> is 0) or a variable point… 53 The function EC_GROUP_precompute_mult stores multiples of the generator for faster point multiplica… 63 EC_POINT_is_at_infinity returns 1 if the point is at infinity, or 0 otherwise. [all …]
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| /freebsd-13.1/contrib/llvm-project/compiler-rt/lib/xray/ |
| H A D | xray_trampoline_arm.S | 9 @ Word-aligned function entry point 15 @ Assume that "q" part of the floating-point registers is not used 22 @ Save floating-point parameters of the instrumented function 36 @ Restore floating-point parameters of the instrumented function 40 @ Word-aligned function entry point 53 @ Save the floating-point return value of the instrumented function 68 @ Restore the floating-point return value of the instrumented function 72 @ Word-aligned function entry point 78 @ Assume that "q" part of the floating-point registers is not used 85 @ Save floating-point parameters of the instrumented function [all …]
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| /freebsd-13.1/contrib/tcsh/ |
| H A D | csh-mode.el | 509 (let ((beg (point))) 511 (delete-region beg (point))) 523 (point))) 544 (setq start (point)) 549 (setq start (point))) 560 (buffer-substring (point) 563 (point)))) 770 (point))) 776 (end (point)) 782 (point)))) [all …]
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| /freebsd-13.1/lib/libc/softfloat/templates/ |
| H A D | softfloat-specialize | 6 This C source fragment is part of the SoftFloat IEC/IEEE Floating-point 13 of this code was written as part of a project to build a fixed-point vector 43 Raises the exceptions specified by `flags'. Floating-point traps can be 75 Returns 1 if the single-precision floating-point value `a' is a NaN; 101 Returns the result of converting the single-precision floating-point NaN 121 precision floating-point format. 167 Returns 1 if the double-precision floating-point value `a' is a NaN; 215 precision floating-point format. 320 double-precision floating-point format. 390 Returns 1 if the quadruple-precision floating-point value `a' is a [all …]
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| /freebsd-13.1/lib/libc/softfloat/ |
| H A D | softfloat-specialize | 9 This C source fragment is part of the SoftFloat IEC/IEEE Floating-point 16 of this code was written as part of a project to build a fixed-point vector 57 Raises the exceptions specified by `flags'. Floating-point traps can be 116 Returns 1 if the single-precision floating-point value `a' is a NaN; 149 Returns the result of converting the single-precision floating-point NaN 169 precision floating-point format. 215 Returns 1 if the double-precision floating-point value `a' is a NaN; 271 precision floating-point format. 376 double-precision floating-point format. 446 Returns 1 if the quadruple-precision floating-point value `a' is a [all …]
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| /freebsd-13.1/contrib/apr-util/buckets/ |
| H A D | apr_buckets_simple.c | 29 apr_size_t point) in apr_bucket_simple_split() argument 33 if (point > a->length) { in apr_bucket_simple_split() 39 a->length = point; in apr_bucket_simple_split() 40 b->length -= point; in apr_bucket_simple_split() 41 b->start += point; in apr_bucket_simple_split()
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| /freebsd-13.1/contrib/netbsd-tests/usr.bin/xlint/lint1/ |
| H A D | d_c99_anon_struct.c | 5 struct point { struct 12 struct point top_left; argument 13 struct point bottom_right;
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| /freebsd-13.1/tools/test/testfloat/ |
| H A D | testfloat.txt | 11 TestFloat is a program for testing that a floating-point implementation 19 a machine's floating-point, and the other is a program for testing 20 the SoftFloat software implementation of floating-point. (Information 28 attempt to define or explain the IEC/IEEE Standard for floating-point. 124 Furthermore, even if TestFloat finds no fault with a floating-point 133 point exception flags are actually implemented as sticky flags. 168 point implementation. The second software floating-point is simpler and 232 for all supported floating-point formats. 239 point formats can hold integer values, of course.) 331 The following floating-point comparison functions can be tested: [all …]
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