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/third_party/wpa_supplicant/
DREADME_zh.md4 在OpenHarmony中,wpa_supplicant用来提供Wi-Fi接入和Wi-Fi热点开启的协议栈。
9 **接口层** :提供wpa_supplicant与Wi-Fi服务通信的接口。
10 **wpa协议栈** :提供Wi-Fi接入与热点功能,其中wpa_supplicant负责Wi-Fi接入,hostapd负责热点功能。
22 | |-- hostapd # Wi-Fi热点相关功能(Access Point)
24 | |-- src # Wi-Fi热点与Wi-Fi接入点共用的代码
25 | |-- wpa_supplicant # Wi-Fi接入相关功能(Station)
26 | `-- wpa_supplicant_lib # OpenHarmony对Wi-Fi新开发的业务代码
28 | |-- hostapd # Wi-Fi热点相关功能(Access Point)
30 | |-- src # Wi-Fi热点与Wi-Fi接入点共用的代码
31 | |-- wpa_supplicant # Wi-Fi接入相关功能(Station)
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/third_party/openssl/crypto/sha/asm/
Dsha256-586.pl533 my ($Wi,$ABEF,$CDGH,$TMP)=map("xmm$_",(0..2,7));
553 &pshufd ($Wi,$ABEF,0x1b); # ABCD
557 &punpcklqdq ($CDGH,$Wi); # CDGH
568 &movdqa ($Wi,&QWP(0*16-0x80,$K256));
569 &paddd ($Wi,@MSG[0]);
572 &pshufd ($Wi,$Wi,0x0e);
577 &movdqa ($Wi,&QWP(1*16-0x80,$K256));
578 &paddd ($Wi,@MSG[1]);
581 &pshufd ($Wi,$Wi,0x0e);
586 &movdqa ($Wi,&QWP(2*16-0x80,$K256));
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Dsha256-mb-x86_64.pl426 my ($Wi,$TMP0,$TMP1,$TMPx,$ABEF0,$CDGH0,$ABEF1,$CDGH1)=map("%xmm$_",(0..3,12..15));
528 movdqa 0*16-0x80($Tbl),$Wi
530 paddd @MSG0[0],$Wi
532 movdqa $Wi,$TMP0
539 movdqa $TMP1,$Wi
542 pshufd \$0x0e,$TMP0,$Wi
546 pshufd \$0x0e,$TMP1,$Wi
554 movdqa $TMP0,$Wi
558 movdqa $TMP1,$Wi
564 pshufd \$0x0e,$TMP0,$Wi
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Dsha512-x86_64.pl564 my ($Wi,$ABEF,$CDGH,$TMP,$BSWAP,$ABEF_SAVE,$CDGH_SAVE)=map("%xmm$_",(0..2,7..10));
589 pshufd \$0x1b,$ABEF,$Wi # ABCD
594 punpcklqdq $Wi,$CDGH # CDGH
605 movdqa 0*32-0x80($Tbl),$Wi
606 paddd @MSG[0],$Wi
610 pshufd \$0x0e,$Wi,$Wi
615 movdqa 1*32-0x80($Tbl),$Wi
616 paddd @MSG[1],$Wi
619 pshufd \$0x0e,$Wi,$Wi
624 movdqa 2*32-0x80($Tbl),$Wi
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/third_party/python/Mac/BuildScript/scripts/
Dpostflight.framework9 "${FWK}/bin/python@PYVER@" -E -s -Wi \
14 "${FWK}/bin/python@PYVER@" -E -s -Wi -O \
19 "${FWK}/bin/python@PYVER@" -E -s -Wi \
24 "${FWK}/bin/python@PYVER@" -E -s -Wi -O \
Dpostflight.ensurepip20 "${FWK}/bin/python${PYVER}" -E -s -Wi \
25 "${FWK}/bin/python${PYVER}" -E -s -Wi -O \
/third_party/openssl/crypto/aes/asm/
Daesni-sha256-x86_64.pl1318 my ($Wi,$ABEF,$CDGH,$TMP,$BSWAP,$ABEF_SAVE,$CDGH_SAVE)=map("%xmm$_",(0..3,7..9));
1402 pshufd \$0x1b,$ABEF,$Wi # ABCD
1407 punpcklqdq $Wi,$CDGH # CDGH
1419 movdqa 0*32-0x80($Tbl),$Wi
1420 paddd @MSG[0],$Wi
1428 pshufd \$0x0e,$Wi,$Wi
1434 movdqa 1*32-0x80($Tbl),$Wi
1435 paddd @MSG[1],$Wi
1442 pshufd \$0x0e,$Wi,$Wi
1448 movdqa 2*32-0x80($Tbl),$Wi
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/third_party/openssl/crypto/sm3/
Dsm3_local.h53 #define RND(A, B, C, D, E, F, G, H, TJ, Wi, Wj, FF, GG) \ argument
59 const SM3_WORD TT2 = GG(E, F, G) + H + SS1 + Wi; \
66 #define R1(A,B,C,D,E,F,G,H,TJ,Wi,Wj) \ argument
67 RND(A,B,C,D,E,F,G,H,TJ,Wi,Wj,FF0,GG0)
69 #define R2(A,B,C,D,E,F,G,H,TJ,Wi,Wj) \ argument
70 RND(A,B,C,D,E,F,G,H,TJ,Wi,Wj,FF1,GG1)
/third_party/wpa_supplicant/wpa_supplicant-2.9/wpa_supplicant/doc/docbook/
Dwpa_background.sgml10 <refpurpose>Background information on Wi-Fi Protected Access and IEEE 802.11i</refpurpose>
24 <para>Wi-Fi Alliance (http://www.wi-fi.org/) used a draft version
27 hardware. This is called Wi-Fi Protected Access&lt;TM&gt; (WPA). This
29 and certification done by Wi-Fi Alliance. Wi-Fi provides
54 for additional servers. Wi-Fi calls these "WPA-Enterprise" and
73 was approved in June 2004. Wi-Fi Alliance is using the final IEEE
/third_party/wpa_supplicant/wpa_supplicant-2.9_standard/wpa_supplicant/doc/docbook/
Dwpa_background.sgml14 <refpurpose>Background information on Wi-Fi Protected Access and IEEE 802.11i</refpurpose>
28 <para>Wi-Fi Alliance (http://www.wi-fi.org/) used a draft version
31 hardware. This is called Wi-Fi Protected Access&lt;TM&gt; (WPA). This
33 and certification done by Wi-Fi Alliance. Wi-Fi provides
58 for additional servers. Wi-Fi calls these "WPA-Enterprise" and
77 was approved in June 2004. Wi-Fi Alliance is using the final IEEE
/third_party/skia/third_party/externals/swiftshader/third_party/llvm-10.0/llvm/lib/Target/BPF/
DBPFRegisterInfo.td17 class Wi<bits<16> Enc, string n> : Register<n> {
33 def W#I : Wi<I, "w"#I>, DwarfRegNum<[I]>;
35 def R#I : Ri<I, "r"#I, [!cast<Wi>("W"#I)]>, DwarfRegNum<[I]>;
/third_party/ffmpeg/libavcodec/
Dsbrdsp.c77 union av_intfloat32 *Wi = (union av_intfloat32*) W; in sbr_qmf_post_shuffle_c() local
80 Wi[2 * k + 0].i = zi[63 - k].i ^ (1U << 31); in sbr_qmf_post_shuffle_c()
81 Wi[2 * k + 1].i = zi[ k + 0].i; in sbr_qmf_post_shuffle_c()
82 Wi[2 * k + 2].i = zi[62 - k].i ^ (1U << 31); in sbr_qmf_post_shuffle_c()
83 Wi[2 * k + 3].i = zi[ k + 1].i; in sbr_qmf_post_shuffle_c()
/third_party/wpa_supplicant/wpa_supplicant-2.9_standard/wpa_supplicant/
DREADME-DPP12 Device Provisioning Protocol (also known as Wi-Fi Easy Connect) allows
13 enrolling of interface-less devices in a secure Wi-Fi network using many
20 More information about Wi-Fi Easy Connect is available from this Wi-Fi
DREADME-P2P1 wpa_supplicant and Wi-Fi P2P
4 This document describes how the Wi-Fi P2P implementation in
10 Introduction to Wi-Fi P2P
15 More information about Wi-Fi P2P is available from Wi-Fi Alliance:
16 http://www.wi-fi.org/Wi-Fi_Direct.php
28 Wi-Fi P2P is an optional component that needs to be enabled in the
30 configuration that includes Wi-Fi P2P support and Linux nl80211
53 Actual Wi-Fi P2P operations are requested during runtime. These can be
406 4 = Wi-Fi Display
445 # Wi-Fi Display examples
/third_party/mbedtls/tests/data_files/
Drsa_pkcs1_1024_3des.pem6 2t1KtlcHoI+Wi+PkpukHCpCvM0Kju19PQuNSvn6eFtR9VOwgk6x+j9x9ZeZp0Qks
/third_party/openssl/test/ocsp-tests/
DISIC_ND1_Issuer_ICA.pem10 ggEBAMxKljPNJY1n7iiWN4dG8PYEooR/U6qW5h+xAhxu7X0h1Nc8HqLYaS+ot/Wi
DWKIC_ND1_Issuer_ICA.pem10 ggEBAM1KljPNJY1n7iiWN4dG8PYEooR/U6qW5h+xAhxu7X0h1Nc8HqLYaS+ot/Wi
DWSNIC_ND1_Issuer_ICA.pem10 ggEBAMxKljPNJY1n7iiWN4dG8PYEooR/U6qW5h+xAhxu7X0h1Nc8HqLYaS+ot/Wi
DND1_Issuer_ICA.pem10 ggEBAMxKljPNJY1n7iiWN4dG8PYEooR/U6qW5h+xAhxu7X0h1Nc8HqLYaS+ot/Wi
DND2_Cert_ICA.pem10 ggEBAMxKljPNJY1n7iiWN4dG8PYEooR/U6qW5h+xAhxu7X0h1Nc8HqLYaS+ot/Wi
DND1_Issuer_ICA-Cross.pem10 ggEBAMxKljPNJY1n7iiWN4dG8PYEooR/U6qW5h+xAhxu7X0h1Nc8HqLYaS+ot/Wi
/third_party/wpa_supplicant/wpa_supplicant-2.9/hostapd/
DREADME-MULTI-AP10 The Wi-Fi Alliance Multi-AP Specification is the technical specification for
11 Wi-Fi CERTIFIED EasyMesh(TM) [1], the Wi-Fi Alliance® certification program for
12 Multi-AP. It defines control protocols between Wi-Fi® access points (APs) to
/third_party/wpa_supplicant/wpa_supplicant-2.9_standard/hostapd/
DREADME-MULTI-AP10 The Wi-Fi Alliance Multi-AP Specification is the technical specification for
11 Wi-Fi CERTIFIED EasyMesh(TM) [1], the Wi-Fi Alliance® certification program for
12 Multi-AP. It defines control protocols between Wi-Fi® access points (APs) to
DREADME-WPS1 hostapd and Wi-Fi Protected Setup (WPS)
12 Wi-Fi Protected Setup (WPS) is a mechanism for easy configuration of a
40 More information about WPS is available from Wi-Fi Alliance:
94 # Enable internal EAP server for EAP-WSC (part of Wi-Fi Protected Setup)
345 Wi-Fi handover as specified in WSC 2.0).
/third_party/wpa_supplicant/wpa_supplicant-2.9/wpa_supplicant/
DREADME-P2P1 wpa_supplicant and Wi-Fi P2P
4 This document describes how the Wi-Fi P2P implementation in
10 Introduction to Wi-Fi P2P
15 More information about Wi-Fi P2P is available from Wi-Fi Alliance:
16 http://www.wi-fi.org/Wi-Fi_Direct.php
28 Wi-Fi P2P is an optional component that needs to be enabled in the
30 configuration that includes Wi-Fi P2P support and Linux nl80211
53 Actual Wi-Fi P2P operations are requested during runtime. These can be
406 4 = Wi-Fi Display
445 # Wi-Fi Display examples

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