Xinorbis 8 0 15 1 0

Author: m | 2025-04-24

★★★★☆ (4.9 / 1592 reviews)

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15 49.0138 8. arrow 0 arrow 0 4000 1 0 horizontal 300 0 1

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1 0 1 1 0 1 1 0 0 1 1 0 1 1 1 1 - University of Toronto

Xinorbis είναι ένα πρόγραμμα δωρεάν που μας επιτρέπει αναλύστε την κατανομή του χώρου στο σκληρό δίσκο , προβολή αναφορές με τη μορφή πινάκων, γραφημάτων, δέντρων , κ.λπ., του δομή πλήρης, περιεχόμενο και διανομή σκληρού δίσκου . Επίσης, Xinorbis μας επιτρέπει να εξάγουμε αυτές τις αναφορές σε μορφές HTML, ASCII, CSV ή XML. Το πρόγραμμα διαθέτει επίσης ένα εργαλείο για εύρεση και κατάργηση διπλών αρχείων εξοικονομώντας χώρο στο σκληρό δίσκο.Xinorbis 5.1.1 είναι η νέα έκδοση αυτού του προγράμματος δωρεάν , που έχει ακόμη και μια έκδοση φορητός για μεταφορά εάν θέλετε με κλειδί USB.Το πρόγραμμα είναι συμβατό με λειτουργικά συστήματα Windows 2000, XP, Vista et Windows 7 .Σε αυτήν την έκδοση του Ξενόρμπης, Προστέθηκε η επιλογή αποθήκευσης των εξαιρούμενων αρχείων, μαζί με τη λίστα ειδικών φακέλων στα αγαπημένα από το κουμπί προσθήκης, προστέθηκαν λεπτομέρειες αναπαραγωγής στη συνοπτική έξοδο και προστέθηκε η επιλογή εξερεύνησης του αναδυόμενου μενού σάρωσης.Το πρόγραμμα έχει μια πολύ καθαρή και ακριβή διεπαφή όπως φαίνεται σε αυτό το στιγμιότυπο οθόνης:Μπορούμε να κατεβάσουμε την τελευταία έκδοση του Xinorbis στο από τον ακόλουθο σύνδεσμο στον επίσημο ιστότοπό του:-> Λήψη Xinorbis 5.1.1

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2 0 1 8 2 0 1 9 - kirkpatrickbank.com

3 : 0 Sparta Rotterdam 05.02 PSV 2 : 0 Feyenoord 02.02 Ajax 2 : 1 Feyenoord 29.01 Lille 6 : 1 Feyenoord 22.01 Feyenoord 3 : 0 Bayern Munich 18.01 Willem II 1 : 1 Feyenoord 15.01 Rijnsburgse Boys 1 : 4 Feyenoord Tables Main table plus home and away only tables. # Team G W D L Goals Points 1 Liverpool 8 7 0 1 17:5 21 2 Barcelona 8 6 1 1 28:13 19 3 Arsenal 8 6 1 1 16:3 19 5 Atl. Madrid 8 6 0 2 20:12 18 6 Bayer Leverkusen 8 5 1 2 15:7 16 8 Aston Villa 8 5 1 2 13:6 16 9 Atalanta 8 4 3 1 20:6 15 10 Dortmund 8 5 0 3 22:12 15 11 Real Madrid 8 5 0 3 20:12 15 12 Bayern Munich 8 5 0 3 20:12 15 13 AC Milan 8 5 0 3 14:11 15 16 Benfica 8 4 1 3 16:12 13 17 Monaco 8 4 1 3 13:13 13 18 Brest 8 4 1 3 10:11 13 19 Feyenoord 8 4 1 3 18:21 13 20 Juventus 8 3 3 2 9:7 12 21 Celtic 8 3 3 2 13:14 12 22 Manchester City 8 3 2 3 18:14 11 23 Sporting Lisbon 8 3 2 3 13:12 11 24 Club Brugge 8 3 2 3 7:11 11 25 Din. Zagreb 8 3 2 3 12:19 11 26 VfB Stuttgart 8 3 1 4 13:17 10 27 Shakhtar 8 2 1 5 8:16 7 29 Crvena zvezda 8 2 0 6 13:22 6 30 Sturm Graz 8 2 0 6 5:14 6 31 Sparta Prague 8 1 1 6 7:21 4 32 RB Leipzig 8 1 0 7 8:15 3 34 Salzburg 8 1 0 7 5:27 3

Dutching on 0 – 0, 0 – 1 and 0 - MarketFeeder

1 0 13 23 56.5 3 8 37.5 7 8 87.5 67.9 3 9 3 1 +24 Sat 4/23 OKC @ DAL W 119-108 39 25 5 15 2 0 7 19 36.8 3 5 60.0 8 12 66.7 51.5 3 2 2 0 +4 Thu 4/21 OKC @ DAL W 131-102 34 26 0 15 2 1 9 16 56.3 2 3 66.7 6 9 66.7 65.1 0 0 6 4 +29 Mon 4/18 OKC vs DAL L 84-85 38 19 14 6 2 0 8 22 36.4 1 6 16.7 2 4 50.0 40.0 6 8 4 4 +5 Sat 4/16 OKC vs DAL W 108-70 30 24 5 11 1 0 7 15 46.7 2 7 28.6 8 8 100.0 64.8 1 4 5 1 +39 Average 35.9 26.0 7.2 11.2 1.6 0.2 8.8 19.0 46.3 2.2 5.8 37.9 6.2 8.2 75.6 57.5 2.6 4.6 4.0 2.0 20.2 April DATE TM OPP SCORE MIN PTS REB AST STL BLK FGM FGA FG% 3PM 3PA 3P% FTM FTA FT% TS% OREB DREB TOV PF +/- Mon 4/11 OKC vs LAL W 112-79 28 13 10 14 1 0 5 13 38.5 0 5 0.0 3 5 60.0 42.8 0 10 3 2 +27 Sat 4/9 OKC @ SAC L 112-114 34 24 5 10 1 0 7 15 46.7 1 5 20.0 9 10 90.0 61.9 1 4 8 5 +3 Tue 4/5 OKC @ DEN W 124-102 27 13 14 12 2 0 4 9 44.4 2. 15 49.0138 8. arrow 0 arrow 0 4000 1 0 horizontal 300 0 1

Dutching on 0 0, 0 1 and 0 - MarketFeeder

The Enhanced USB Host Controller contains two sets of software-accessible hardware registers: memory-mapped Host Controller Registers and optional PCI configuration registers. Note that the PCI configuration registers are only needed for PCI devices that implement the Host Controller.Memory-mapped USB Host Controller Registers—This block of registers is memory-mapped into non-cacheable memory. This memory space must begin on a DWord (32-bit) boundary. This register space is divided into two sections: a set of read-only capability registers and a set of read/write operational registers. The table below describes each register space.Note: Host controllers are not required to support exclusive-access mechanisms (such as PCI LOCK) for accesses to the memory-mapped register space. Therefore, if software attempts exclusive-access mechanisms to the host controller memory-mapped register space, the results are undefined.PCI Configuration Registers (for PCI devices)—In addition to the normal PCI header, power management, and device-specific registers, two registers are needed in the PCI configuration space to support USB. The normal PCI header and device-specific registers are beyond the scope of this document (the UHPHS_CLASSC register is shown in this document). Note that HCD does not interact with the PCI configuration space. This space is used only by the PCI enumerator to identify the USB Host Controller, and assign the appropriate system resources.The table below summarizes the enhanced interface register sets.OffsetRegister SetExplanation0 to N-1Capability RegistersThe capability registers specify the limits, restrictions, and capabilities of a host controller implementation.These values are used as parameters to the host controller driver.N to N+M-1Operational RegistersThe operational registers are used by system software to control and monitor the operational state of the host controller.Note: Software must not modify reserved bits in Read/Write registers.OffsetNameBit Pos.765432100x00UHPHS_HCCAPBASE31:24HCIVERSION[15:8]23:16HCIVERSION[7:0]15:8 7:0CAPLENGTH[7:0]0x04UHPHS_HCSPARAMS31:24 23:16N_DP[3:0] P_INDICATOR15:8N_CC[3:0]N_PCC[3:0]7:0 PPCN_PORTS[3:0]0x08UHPHS_HCCPARAMS31:24 23:16 15:8EECP[7:0]7:0IST[3:0] ASPCPFLFAC0x0C...0x0FReserved 0x10UHPHS_USBCMD31:24 23:16ITC[7:0]15:8 ASPME ASPMC[1:0]7:0LHCRIAADASEPSEFLS[1:0]HCRESETRS0x14UHPHS_USBSTS31:24 23:16 15:8ASSPSSRCMHCHLT 7:0 IAAHSEFLRPCDUSBERRINTUSBINT0x18UHPHS_USBINTR31:24 23:16 15:8 7:0 IAAEHSEEFLREPCIEUSBEIEUSBIE0x1CUHPHS_FRINDEX31:24 23:16 15:8 FI[13:8]7:0FI[7:0]0x20...0x23Reserved 0x24UHPHS_PERIODICLISTBASE31:24BA[19:12]23:16BA[11:4]15:8BA[3:0] 7:0 0x28UHPHS_ASYNCLISTADDR31:24LPL[26:19]23:16LPL[18:11]15:8LPL[10:3]7:0LPL[2:0] 0x2C...0x4FReserved 0x50UHPHS_CONFIGFLAG31:24 23:16 15:8 7:0 CF0x54UHPHS_PORTSC031:24 23:16 WKOC_EWKDSCNNT_EWKCNNT_EPTC[3:0]15:8PIC[1:0]POPPLS[1:0] PR7:0SUSFPROCCOCAPEDCPEDCSCCCS0x58UHPHS_PORTSC131:24 23:16 WKOC_EWKDSCNNT_EWKCNNT_EPTC[3:0]15:8PIC[1:0]POPPLS[1:0] PR7:0SUSFPROCCOCAPEDCPEDCSCCCS0x5CUHPHS_PORTSC231:24 23:16 WKOC_EWKDSCNNT_EWKCNNT_EPTC[3:0]15:8PIC[1:0]POPPLS[1:0] PR7:0SUSFPROCCOCAPEDCPEDCSCCCS0x60...0xA7Reserved 0xA8UHPHS_INSNREG0631:24AHB_ERR 23:16 15:8 HBURST[2:0]Nb_Burst[4]7:0Nb_Burst[3:0]Nb_Success_Burst[3:0]0xACUHPHS_INSNREG0731:24AHB_ADDR[31:24]23:16AHB_ADDR[23:16]15:8AHB_ADDR[15:8]7:0AHB_ADDR[7:0]0xB0UHPHS_INSNREG0831:24 23:16 15:8 7:0 HSIC_EN

0 0 0 0 0 0 1 0 0 0 0 0 0 0 0 0 7 6 0 0 0 0 0 0 0 0 0 0 6 3 0 0

1 Feb. 22, 2025 0 -- 5 March 5, 2025 0 -- 23 5 March 17, 2025 1 Jan. 18, 2025 2 Feb. 8, 2025 1 Feb. 19, 2025 24 1 March 5, 2025 2 Jan. 8, 2025 4 March 8, 2025 0 -- 25 1 March 22, 2025 1 March 1, 2025 4 Jan. 15, 2025 1 March 12, 2025 26 2 Jan. 4, 2025 1 Jan. 1, 2025 3 Feb. 26, 2025 1 March 17, 2025 27 3 Feb. 5, 2025 0 -- 0 -- 0 -- 28 6 March 15, 2025 0 -- 1 Jan. 29, 2025 0 -- 29 2 Feb. 10, 2025 0 -- 3 Jan. 13, 2025 0 -- 30 2 Feb. 5, 2025 0 -- 3 March 12, 2025 0 -- 31 3 Jan. 29, 2025 0 -- 2 March 12, 2025 0 -- 32 5 Feb. 12, 2025 0 -- 1 Jan. 13, 2025 0 -- 33 3 March 15, 2025 0 -- 2 Jan. 20, 2025 0 -- 34 2 Feb. 24, 2025 0 -- 6 March 3, 2025 0 -- 35 3 Jan. 18, 2025 0 -- 2 March 15, 2025 0 -- 36 4 March 15, 2025 0 -- 5 March 19, 2025 0 -- 37 2 Feb. 3, 2025 0 -- 4 March 8, 2025 0 -- 38 4 March 17, 2025 0 -- 4 March 17, 2025 0 -- 39 2 Jan. 13, 2025 0 -- 4 March 5, 2025 0 -- 40 4 March 10, 2025 0 -- 5 March 19, 2025 0 -- 41 1 Jan. 15, 2025 0 -- 4 March 10, 2025 0 -- 42 0 -- 0 -- 3 March 10, 2025 0 -- 43 3 Feb. 10, 2025 0 -- 2 Feb. 19, 2025 0 -- 44 3 March 1, 2025 0 -- 3 Feb. 10, 2025 0 -- 45 2 Feb. 15, 2025 0 -- 3 March 12, 2025 0 -- 46 2 March 22, 2025 0 -- 2 March 10, 2025 0 -- 47 5 March 10, 2025 0 -- 3 March 22, 2025 0 -- 48 1 Feb. 26, 2025 0 -- 3 March 10, 2025 0 -- 49 6 March 19, 2025 0 -- 2 Feb. 17, 2025 0 -- 50 4 March 10, 2025 0 -- 3 March 15, 2025 0 -- 51 2 March 12, 2025 0 -- 1 Jan. 15, 2025 0 -- 52 3 March 3, 2025 0 -- 3 Jan. 25, 2025 0 -- 53 3 Jan. 27, 2025 0 -- 3 March 22, 2025 0 -- 54 6 March 15, 2025 0 -- 5 March 3, 2025 0 -- 55 4 March 10, 2025 0 -- 1 Feb. 3, 2025 0

Habitablezones 6 - Lab 12 - 0 0 380 0 0 30. 1 1 8. 2 5 1. 4

OpponentEloDiffResultsScoreLOSPerf– Stockfish 15 64-bit 4CPU3622+13−13(+164)6.5 − 13.5(+0−7=13)32.5%6.5 / 200.0%+53– Stockfish 14 64-bit 4CPU3621+13−13(+163)5.5 − 14.5(+0−9=11)27.5%5.5 / 200.0%+14– Dragon by Komodo 3.1 64-bit 4CPU3616+14−14(+158)5 − 15(+0−10=10)25.0%5.0 / 200.0%−8– Fat Fritz 2 64-bit 4CPU3601+10−10(+143)6.5 − 13.5(+0−7=13)32.5%6.5 / 200.0%+32– Berserk 10 64-bit 4CPU3567+13−13(+109)6 − 14(+0−8=12)30.0%6.0 / 200.0%−18– Revenge 3.0 64-bit 4CPU3558+9−9(+100)6.5 − 13.5(+1−8=11)32.5%6.5 / 200.0%−15– Ethereal 13.75 64-bit 4CPU3554+12−12(+96)6.5 − 13.5(+0−7=13)32.5%6.5 / 200.0%−14– Koivisto 8.0 64-bit 4CPU3551+11−11(+93)7 − 13(+0−6=14)35.0%7.0 / 200.0%−2– SlowChess Blitz 2.9 64-bit 4CPU3545+9−9(+87)8.5 − 11.5(+0−3=17)42.5%8.5 / 200.0%+41– Clover 5.0 64-bit 4CPU3544+17−17(+86)12 − 20(+0−8=24)37.5%12.0 / 320.0%+9– Deep Sjeng 3.6 a16 64-bit 4CPU3544+16−16(+86)12 − 20(+0−8=24)37.5%12.0 / 320.0%+9– RubiChess 20220813 64-bit 4CPU3530+15−15(+72)7 − 13(+0−6=14)35.0%7.0 / 200.0%−20– rofChade 3.0 64-bit 4CPU3526+10−10(+68)7 − 13(+0−6=14)35.0%7.0 / 200.0%−24– Clover 4.0 64-bit 4CPU3525+16−16(+67)11 − 19(+0−8=22)36.7%11.0 / 300.0%−16– Minic 3.32 64-bit 4CPU3520+14−14(+62)8.5 − 15.5(+0−7=17)35.4%8.5 / 240.0%−28– Minic 3.30 64-bit 4CPU3515+14−14(+57)6.5 − 13.5(+0−7=13)32.5%6.5 / 200.0%−52– Caissa 1.8 64-bit 4CPU3513+17−17(+55)11 − 15(+0−4=22)42.3%11.0 / 260.0%+8– Seer 2.5.0 64-bit 4CPU3510+13−13(+52)9.5 − 10.5(+1−2=17)47.5%9.5 / 200.0%+38– Carp 3.0.0 64-bit 4CPU3501+16−16(+43)10.5 − 11.5(+0−1=21)47.7%10.5 / 220.0%+29– Arasan 23.4 64-bit 4CPU3499+13−13(+41)8.5 − 11.5(+0−3=17)42.5%8.5 / 200.0%−4– Uralochka 3.38c 64-bit 4CPU3493+15−15(+35)10 − 10(+2−2=16)50.0%10.0 / 200.0%+35– Rebel 15.1a 64-bit 4CPU3490+16−16(+32)9 − 11(+0−2=18)45.0%9.0 / 200.1%+4– Arasan 23.5 64-bit 4CPU3488+15−15(+30)10.5 − 11.5(+1−2=19)47.7%10.5 / 220.2%+17– Igel 3.1.0 64-bit 4CPU3484+12−12(+26)9.5 − 10.5(+0−1=19)47.5%9.5 / 200.3%+13– Black Marlin 7.0 64-bit 4CPU3466+14−14(+8)8.5 − 11.5(+1−4=15)42.5%8.5 / 2018.7%−41– Houdini 6 64-bit 4CPU3456+7−7(−2)9 − 11(+1−3=16)45.0%9.0 / 2060.1%−31– Velvet 5.1.0 64-bit 4CPU3454+17−17(−4)16.5 − 13.5(+7−4=19)55.0%16.5 / 3063.2%+29– Marvin 6.1.0 64-bit 4CPU3448+15−15(−10)11.5 − 12.5(+0−1=23)47.9%11.5 / 2482.7%−20– Wasp 6.00 64-bit 4CPU3440+15−15(−18)12.5 − 7.5(+5−0=15)62.5%12.5 / 2096.4%+55– Nemorino 6.05 64-bit 4CPU3432+16−16(−26)10 − 10(+3−3=14)50.0%10.0 / 2099.2%−26– Booot 7.0 64-bit 4CPU3428+16−16(−30)10 − 10(+2−2=16)50.0%10.0 / 2099.7%−33– Velvet 4.1.0 64-bit 4CPU3423+15−15(−35)11 − 9(+4−2=14)55.0%11.0 / 20100.0%−4– Mantissa 3.7.2 64-bit 4CPU3381+15−15(−77)12 − 8(+4−0=16)60.0%12.0 / 20100.0%−17– Marvin 6.0.0 64-bit 4CPU3377+16−16(−81)11 − 9(+2−0=18)55.0%11.0 / 20100.0%−53– Expositor 2BR17 64-bit 4CPU3376+16−16(−82)12.5 − 7.5(+6−1=13)62.5%12.5 / 20100.0%0– Counter 5.0 64-bit 4CPU3373+18−18(−85)14.5 − 9.5(+7−2=15)60.4%14.5 / 24100.0%−17– Smallbrain 6.0 64-bit 4CPU3370+16−16(−88)13.5 − 10.5(+3−0=21)56.3%13.5 / 24100.0%−52– Stash 34.0 64-bit 4CPU3364+18−18(−94)16.5 − 7.5(+10−1=13)68.8%16.5 / 24100.0%+28– Drofa 4.0.0 64-bit 4CPU3318+20−20(−140)15 − 3(+12−0=6)83.3%15.0 / 18100.0%+102– Winter 1.0 64-bit 4CPU3306+18−18(−152)12.5 − 3.5(+9−0=7)78.1%12.5 / 16100.0%+40– Drofa 3.3.22 64-bit 4CPU3300+21−21(−158)13.5 − 6.5(+7−0=13)67.5%13.5 / 20100.0%−47. 15 49.0138 8. arrow 0 arrow 0 4000 1 0 horizontal 300 0 1 %PDF-1.5 % 30 0 obj /Type /XObject /Subtype /Form /BBox [0 0 5669.291 8] /FormType 1 /Matrix [1 0 0 1 0 0] /Resources 31 0 R /Length 15 /Filter /FlateDecode stream x P( endstream endobj 32 0 obj /Type /XObject /Subtype /Form /BBox [0 0 8 8] /FormType 1 /Matrix [1 0 0 1 0 0] /Resources 33 0 R /Length 15 /Filter /FlateDecode stream x P(

Comments

User4516

Xinorbis είναι ένα πρόγραμμα δωρεάν που μας επιτρέπει αναλύστε την κατανομή του χώρου στο σκληρό δίσκο , προβολή αναφορές με τη μορφή πινάκων, γραφημάτων, δέντρων , κ.λπ., του δομή πλήρης, περιεχόμενο και διανομή σκληρού δίσκου . Επίσης, Xinorbis μας επιτρέπει να εξάγουμε αυτές τις αναφορές σε μορφές HTML, ASCII, CSV ή XML. Το πρόγραμμα διαθέτει επίσης ένα εργαλείο για εύρεση και κατάργηση διπλών αρχείων εξοικονομώντας χώρο στο σκληρό δίσκο.Xinorbis 5.1.1 είναι η νέα έκδοση αυτού του προγράμματος δωρεάν , που έχει ακόμη και μια έκδοση φορητός για μεταφορά εάν θέλετε με κλειδί USB.Το πρόγραμμα είναι συμβατό με λειτουργικά συστήματα Windows 2000, XP, Vista et Windows 7 .Σε αυτήν την έκδοση του Ξενόρμπης, Προστέθηκε η επιλογή αποθήκευσης των εξαιρούμενων αρχείων, μαζί με τη λίστα ειδικών φακέλων στα αγαπημένα από το κουμπί προσθήκης, προστέθηκαν λεπτομέρειες αναπαραγωγής στη συνοπτική έξοδο και προστέθηκε η επιλογή εξερεύνησης του αναδυόμενου μενού σάρωσης.Το πρόγραμμα έχει μια πολύ καθαρή και ακριβή διεπαφή όπως φαίνεται σε αυτό το στιγμιότυπο οθόνης:Μπορούμε να κατεβάσουμε την τελευταία έκδοση του Xinorbis στο από τον ακόλουθο σύνδεσμο στον επίσημο ιστότοπό του:-> Λήψη Xinorbis 5.1.1

2025-03-27
User7146

3 : 0 Sparta Rotterdam 05.02 PSV 2 : 0 Feyenoord 02.02 Ajax 2 : 1 Feyenoord 29.01 Lille 6 : 1 Feyenoord 22.01 Feyenoord 3 : 0 Bayern Munich 18.01 Willem II 1 : 1 Feyenoord 15.01 Rijnsburgse Boys 1 : 4 Feyenoord Tables Main table plus home and away only tables. # Team G W D L Goals Points 1 Liverpool 8 7 0 1 17:5 21 2 Barcelona 8 6 1 1 28:13 19 3 Arsenal 8 6 1 1 16:3 19 5 Atl. Madrid 8 6 0 2 20:12 18 6 Bayer Leverkusen 8 5 1 2 15:7 16 8 Aston Villa 8 5 1 2 13:6 16 9 Atalanta 8 4 3 1 20:6 15 10 Dortmund 8 5 0 3 22:12 15 11 Real Madrid 8 5 0 3 20:12 15 12 Bayern Munich 8 5 0 3 20:12 15 13 AC Milan 8 5 0 3 14:11 15 16 Benfica 8 4 1 3 16:12 13 17 Monaco 8 4 1 3 13:13 13 18 Brest 8 4 1 3 10:11 13 19 Feyenoord 8 4 1 3 18:21 13 20 Juventus 8 3 3 2 9:7 12 21 Celtic 8 3 3 2 13:14 12 22 Manchester City 8 3 2 3 18:14 11 23 Sporting Lisbon 8 3 2 3 13:12 11 24 Club Brugge 8 3 2 3 7:11 11 25 Din. Zagreb 8 3 2 3 12:19 11 26 VfB Stuttgart 8 3 1 4 13:17 10 27 Shakhtar 8 2 1 5 8:16 7 29 Crvena zvezda 8 2 0 6 13:22 6 30 Sturm Graz 8 2 0 6 5:14 6 31 Sparta Prague 8 1 1 6 7:21 4 32 RB Leipzig 8 1 0 7 8:15 3 34 Salzburg 8 1 0 7 5:27 3

2025-04-24
User2232

The Enhanced USB Host Controller contains two sets of software-accessible hardware registers: memory-mapped Host Controller Registers and optional PCI configuration registers. Note that the PCI configuration registers are only needed for PCI devices that implement the Host Controller.Memory-mapped USB Host Controller Registers—This block of registers is memory-mapped into non-cacheable memory. This memory space must begin on a DWord (32-bit) boundary. This register space is divided into two sections: a set of read-only capability registers and a set of read/write operational registers. The table below describes each register space.Note: Host controllers are not required to support exclusive-access mechanisms (such as PCI LOCK) for accesses to the memory-mapped register space. Therefore, if software attempts exclusive-access mechanisms to the host controller memory-mapped register space, the results are undefined.PCI Configuration Registers (for PCI devices)—In addition to the normal PCI header, power management, and device-specific registers, two registers are needed in the PCI configuration space to support USB. The normal PCI header and device-specific registers are beyond the scope of this document (the UHPHS_CLASSC register is shown in this document). Note that HCD does not interact with the PCI configuration space. This space is used only by the PCI enumerator to identify the USB Host Controller, and assign the appropriate system resources.The table below summarizes the enhanced interface register sets.OffsetRegister SetExplanation0 to N-1Capability RegistersThe capability registers specify the limits, restrictions, and capabilities of a host controller implementation.These values are used as parameters to the host controller driver.N to N+M-1Operational RegistersThe operational registers are used by system software to control and monitor the operational state of the host controller.Note: Software must not modify reserved bits in Read/Write registers.OffsetNameBit Pos.765432100x00UHPHS_HCCAPBASE31:24HCIVERSION[15:8]23:16HCIVERSION[7:0]15:8 7:0CAPLENGTH[7:0]0x04UHPHS_HCSPARAMS31:24 23:16N_DP[3:0] P_INDICATOR15:8N_CC[3:0]N_PCC[3:0]7:0 PPCN_PORTS[3:0]0x08UHPHS_HCCPARAMS31:24 23:16 15:8EECP[7:0]7:0IST[3:0] ASPCPFLFAC0x0C...0x0FReserved 0x10UHPHS_USBCMD31:24 23:16ITC[7:0]15:8 ASPME ASPMC[1:0]7:0LHCRIAADASEPSEFLS[1:0]HCRESETRS0x14UHPHS_USBSTS31:24 23:16 15:8ASSPSSRCMHCHLT 7:0 IAAHSEFLRPCDUSBERRINTUSBINT0x18UHPHS_USBINTR31:24 23:16 15:8 7:0 IAAEHSEEFLREPCIEUSBEIEUSBIE0x1CUHPHS_FRINDEX31:24 23:16 15:8 FI[13:8]7:0FI[7:0]0x20...0x23Reserved 0x24UHPHS_PERIODICLISTBASE31:24BA[19:12]23:16BA[11:4]15:8BA[3:0] 7:0 0x28UHPHS_ASYNCLISTADDR31:24LPL[26:19]23:16LPL[18:11]15:8LPL[10:3]7:0LPL[2:0] 0x2C...0x4FReserved 0x50UHPHS_CONFIGFLAG31:24 23:16 15:8 7:0 CF0x54UHPHS_PORTSC031:24 23:16 WKOC_EWKDSCNNT_EWKCNNT_EPTC[3:0]15:8PIC[1:0]POPPLS[1:0] PR7:0SUSFPROCCOCAPEDCPEDCSCCCS0x58UHPHS_PORTSC131:24 23:16 WKOC_EWKDSCNNT_EWKCNNT_EPTC[3:0]15:8PIC[1:0]POPPLS[1:0] PR7:0SUSFPROCCOCAPEDCPEDCSCCCS0x5CUHPHS_PORTSC231:24 23:16 WKOC_EWKDSCNNT_EWKCNNT_EPTC[3:0]15:8PIC[1:0]POPPLS[1:0] PR7:0SUSFPROCCOCAPEDCPEDCSCCCS0x60...0xA7Reserved 0xA8UHPHS_INSNREG0631:24AHB_ERR 23:16 15:8 HBURST[2:0]Nb_Burst[4]7:0Nb_Burst[3:0]Nb_Success_Burst[3:0]0xACUHPHS_INSNREG0731:24AHB_ADDR[31:24]23:16AHB_ADDR[23:16]15:8AHB_ADDR[15:8]7:0AHB_ADDR[7:0]0xB0UHPHS_INSNREG0831:24 23:16 15:8 7:0 HSIC_EN

2025-04-23
User9463

1 Feb. 22, 2025 0 -- 5 March 5, 2025 0 -- 23 5 March 17, 2025 1 Jan. 18, 2025 2 Feb. 8, 2025 1 Feb. 19, 2025 24 1 March 5, 2025 2 Jan. 8, 2025 4 March 8, 2025 0 -- 25 1 March 22, 2025 1 March 1, 2025 4 Jan. 15, 2025 1 March 12, 2025 26 2 Jan. 4, 2025 1 Jan. 1, 2025 3 Feb. 26, 2025 1 March 17, 2025 27 3 Feb. 5, 2025 0 -- 0 -- 0 -- 28 6 March 15, 2025 0 -- 1 Jan. 29, 2025 0 -- 29 2 Feb. 10, 2025 0 -- 3 Jan. 13, 2025 0 -- 30 2 Feb. 5, 2025 0 -- 3 March 12, 2025 0 -- 31 3 Jan. 29, 2025 0 -- 2 March 12, 2025 0 -- 32 5 Feb. 12, 2025 0 -- 1 Jan. 13, 2025 0 -- 33 3 March 15, 2025 0 -- 2 Jan. 20, 2025 0 -- 34 2 Feb. 24, 2025 0 -- 6 March 3, 2025 0 -- 35 3 Jan. 18, 2025 0 -- 2 March 15, 2025 0 -- 36 4 March 15, 2025 0 -- 5 March 19, 2025 0 -- 37 2 Feb. 3, 2025 0 -- 4 March 8, 2025 0 -- 38 4 March 17, 2025 0 -- 4 March 17, 2025 0 -- 39 2 Jan. 13, 2025 0 -- 4 March 5, 2025 0 -- 40 4 March 10, 2025 0 -- 5 March 19, 2025 0 -- 41 1 Jan. 15, 2025 0 -- 4 March 10, 2025 0 -- 42 0 -- 0 -- 3 March 10, 2025 0 -- 43 3 Feb. 10, 2025 0 -- 2 Feb. 19, 2025 0 -- 44 3 March 1, 2025 0 -- 3 Feb. 10, 2025 0 -- 45 2 Feb. 15, 2025 0 -- 3 March 12, 2025 0 -- 46 2 March 22, 2025 0 -- 2 March 10, 2025 0 -- 47 5 March 10, 2025 0 -- 3 March 22, 2025 0 -- 48 1 Feb. 26, 2025 0 -- 3 March 10, 2025 0 -- 49 6 March 19, 2025 0 -- 2 Feb. 17, 2025 0 -- 50 4 March 10, 2025 0 -- 3 March 15, 2025 0 -- 51 2 March 12, 2025 0 -- 1 Jan. 15, 2025 0 -- 52 3 March 3, 2025 0 -- 3 Jan. 25, 2025 0 -- 53 3 Jan. 27, 2025 0 -- 3 March 22, 2025 0 -- 54 6 March 15, 2025 0 -- 5 March 3, 2025 0 -- 55 4 March 10, 2025 0 -- 1 Feb. 3, 2025 0

2025-03-26
User3321

In this article, we will show you three ways to generate random integers in a range.java.util.Random.nextIntMath.randomjava.util.Random.ints (Java 8)1. java.util.RandomThis Random().nextInt(int bound) generates a random integer from 0 (inclusive) to bound (exclusive).1.1 Code snippet. For getRandomNumberInRange(5, 10), this will generates a random integer between 5 (inclusive) and 10 (inclusive). private static int getRandomNumberInRange(int min, int max) { if (min >= max) { throw new IllegalArgumentException("max must be greater than min"); } Random r = new Random(); return r.nextInt((max - min) + 1) + min; }1.2 What is (max – min) + 1) + min?Above formula will generates a random integer in a range between min (inclusive) and max (inclusive). //Random().nextInt(int bound) = Random integer from 0 (inclusive) to bound (exclusive) //1. nextInt(range) = nextInt(max - min) new Random().nextInt(5); // [0...4] [min = 0, max = 4] new Random().nextInt(6); // [0...5] new Random().nextInt(7); // [0...6] new Random().nextInt(8); // [0...7] new Random().nextInt(9); // [0...8] new Random().nextInt(10); // [0...9] new Random().nextInt(11); // [0...10] //2. To include the last value (max value) = (range + 1) new Random().nextInt(5 + 1) // [0...5] [min = 0, max = 5] new Random().nextInt(6 + 1) // [0...6] new Random().nextInt(7 + 1) // [0...7] new Random().nextInt(8 + 1) // [0...8] new Random().nextInt(9 + 1) // [0...9] new Random().nextInt(10 + 1) // [0...10] new Random().nextInt(11 + 1) // [0...11] //3. To define a start value (min value) in a range, // For example, the range should start from 10 = (range + 1) + min new Random().nextInt(5 + 1) + 10 // [0...5] + 10 = [10...15] new Random().nextInt(6 + 1) + 10 // [0...6] + 10 = [10...16] new Random().nextInt(7 + 1) + 10 // [0...7] + 10 = [10...17] new Random().nextInt(8 + 1) + 10 // [0...8] + 10 = [10...18] new Random().nextInt(9 + 1) + 10 // [0...9] + 10 = [10...19] new Random().nextInt(10 + 1) + 10 // [0...10] + 10 = [10...20] new Random().nextInt(11 + 1) + 10 // [0...11] + 10 = [10...21] // Range = (max - min) // So, the final formula is ((max - min) + 1) + min //4. Test [10...30] // min = 10 , max = 30, range = (max - min) new Random().nextInt((max - min) + 1) + min new Random().nextInt((30 - 10) + 1) + 10 new Random().nextInt((20) + 1) + 10 new Random().nextInt(21) + 10 //[0...20] + 10 = [10...30] //5. Test [15...99] // min = 15 , max = 99, range = (max - min) new Random().nextInt((max - min) + 1) + min new Random().nextInt((99 - 15) + 1) + 15 new Random().nextInt((84) + 1) + 15 new Random().nextInt(85) + 15 //[0...84] + 15 = [15...99] //Done, understand?1.3 Full examples to generate 10 random integers in a range between 5 (inclusive) and 10 (inclusive).TestRandom.javapackage com.mkyong.example.test;import java.util.Random;public class TestRandom { public static void main(String[] args) { for (int i = 0; i = max) { throw new IllegalArgumentException("max must be greater than min"); } Random r = new Random(); return r.nextInt((max - min) + 1)

2025-04-17
User1740

DirectXTKSimpleMathA four by four row-major matrix modeled after the XNA Game Studio 4 (Microsoft.Xna.Framework.Matrix) math library.A 4x4 matrix is commonly used in computer graphics for 2D and 3D transformations.HeaderInitializationusing namespace DirectX::SimpleMath;Matrix m; // Creates an identity matrixMatrix m(1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16); // Creates a matrix [1 2 3 4 // | 5 6 7 8 // | 9 10 11 12 // | 13 14 15 16 ]Matrix m( Vector3(1,2,3), Vector3(4,5,6), Vector(7,8,9) ); // Creates a matrix [1 2 3 0 // | 4 5 6 0 // | 7 8 9 0 // | 0 0 0 1 ]Matrix m( Vector4(1, 2, 3, 4), Vector4(5, 6, 7, 8), Vector4(9, 10, 11, 12), Vector4(13, 14, 15, 16) ); // Creates a matrix [1 2 3 4 // | 5 6 7 8 // | 9 10 11 12 // | 13 14 15 16 ]float arr[16] = { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16 };Matrix m( arr ); // Creates a matrix [1 2 3 0 // | 4 5 6 0 // | 7 8 9 0 // | 0 0 0 1 ]Fields_11, _12, _13, _14: First row of matrix_21, _22, _23, _24: Second row of matrix_31, _32, _33, _34: Third row of matrix_41, _42, _43, _44: Fourth row of matrixPropertiesUp: The up direction vector from the matrixDown: The down direction vector from the matrixRight: The

2025-04-19

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