xref: /qemu/hw/misc/mac_via.c (revision 14562b375b82584bde32a77b0ce02c93de903bcb)
16dca62a0SLaurent Vivier /*
26dca62a0SLaurent Vivier  * QEMU m68k Macintosh VIA device support
36dca62a0SLaurent Vivier  *
46dca62a0SLaurent Vivier  * Copyright (c) 2011-2018 Laurent Vivier
56dca62a0SLaurent Vivier  * Copyright (c) 2018 Mark Cave-Ayland
66dca62a0SLaurent Vivier  *
76dca62a0SLaurent Vivier  * Some parts from hw/misc/macio/cuda.c
86dca62a0SLaurent Vivier  *
96dca62a0SLaurent Vivier  * Copyright (c) 2004-2007 Fabrice Bellard
106dca62a0SLaurent Vivier  * Copyright (c) 2007 Jocelyn Mayer
116dca62a0SLaurent Vivier  *
126dca62a0SLaurent Vivier  * some parts from linux-2.6.29, arch/m68k/include/asm/mac_via.h
136dca62a0SLaurent Vivier  *
146dca62a0SLaurent Vivier  * This work is licensed under the terms of the GNU GPL, version 2 or later.
156dca62a0SLaurent Vivier  * See the COPYING file in the top-level directory.
166dca62a0SLaurent Vivier  */
176dca62a0SLaurent Vivier 
186dca62a0SLaurent Vivier #include "qemu/osdep.h"
196dca62a0SLaurent Vivier #include "qemu-common.h"
206dca62a0SLaurent Vivier #include "migration/vmstate.h"
216dca62a0SLaurent Vivier #include "hw/sysbus.h"
226dca62a0SLaurent Vivier #include "hw/irq.h"
236dca62a0SLaurent Vivier #include "qemu/timer.h"
246dca62a0SLaurent Vivier #include "hw/misc/mac_via.h"
256dca62a0SLaurent Vivier #include "hw/misc/mos6522.h"
266dca62a0SLaurent Vivier #include "hw/input/adb.h"
276dca62a0SLaurent Vivier #include "sysemu/runstate.h"
286dca62a0SLaurent Vivier #include "qapi/error.h"
296dca62a0SLaurent Vivier #include "qemu/cutils.h"
30eb064db9SLaurent Vivier #include "hw/qdev-properties.h"
31ce35e229SEduardo Habkost #include "hw/qdev-properties-system.h"
32eb064db9SLaurent Vivier #include "sysemu/block-backend.h"
33b2619c15SLaurent Vivier #include "trace.h"
3480aab795SLaurent Vivier #include "qemu/log.h"
356dca62a0SLaurent Vivier 
366dca62a0SLaurent Vivier /*
376dca62a0SLaurent Vivier  * VIAs: There are two in every machine,
386dca62a0SLaurent Vivier  */
396dca62a0SLaurent Vivier 
406dca62a0SLaurent Vivier #define VIA_SIZE (0x2000)
416dca62a0SLaurent Vivier 
426dca62a0SLaurent Vivier /*
436dca62a0SLaurent Vivier  * Not all of these are true post MacII I think.
446dca62a0SLaurent Vivier  * CSA: probably the ones CHRP marks as 'unused' change purposes
456dca62a0SLaurent Vivier  * when the IWM becomes the SWIM.
466dca62a0SLaurent Vivier  * http://www.rs6000.ibm.com/resource/technology/chrpio/via5.mak.html
476dca62a0SLaurent Vivier  * ftp://ftp.austin.ibm.com/pub/technology/spec/chrp/inwork/CHRP_IORef_1.0.pdf
486dca62a0SLaurent Vivier  *
496dca62a0SLaurent Vivier  * also, http://developer.apple.com/technotes/hw/hw_09.html claims the
506dca62a0SLaurent Vivier  * following changes for IIfx:
516dca62a0SLaurent Vivier  * VIA1A_vSccWrReq not available and that VIA1A_vSync has moved to an IOP.
526dca62a0SLaurent Vivier  * Also, "All of the functionality of VIA2 has been moved to other chips".
536dca62a0SLaurent Vivier  */
546dca62a0SLaurent Vivier 
556dca62a0SLaurent Vivier #define VIA1A_vSccWrReq 0x80   /*
566dca62a0SLaurent Vivier                                 * SCC write. (input)
576dca62a0SLaurent Vivier                                 * [CHRP] SCC WREQ: Reflects the state of the
586dca62a0SLaurent Vivier                                 * Wait/Request pins from the SCC.
596dca62a0SLaurent Vivier                                 * [Macintosh Family Hardware]
606dca62a0SLaurent Vivier                                 * as CHRP on SE/30,II,IIx,IIcx,IIci.
616dca62a0SLaurent Vivier                                 * on IIfx, "0 means an active request"
626dca62a0SLaurent Vivier                                 */
636dca62a0SLaurent Vivier #define VIA1A_vRev8     0x40   /*
646dca62a0SLaurent Vivier                                 * Revision 8 board ???
656dca62a0SLaurent Vivier                                 * [CHRP] En WaitReqB: Lets the WaitReq_L
666dca62a0SLaurent Vivier                                 * signal from port B of the SCC appear on
676dca62a0SLaurent Vivier                                 * the PA7 input pin. Output.
686dca62a0SLaurent Vivier                                 * [Macintosh Family] On the SE/30, this
696dca62a0SLaurent Vivier                                 * is the bit to flip screen buffers.
706dca62a0SLaurent Vivier                                 * 0=alternate, 1=main.
716dca62a0SLaurent Vivier                                 * on II,IIx,IIcx,IIci,IIfx this is a bit
726dca62a0SLaurent Vivier                                 * for Rev ID. 0=II,IIx, 1=IIcx,IIci,IIfx
736dca62a0SLaurent Vivier                                 */
746dca62a0SLaurent Vivier #define VIA1A_vHeadSel  0x20   /*
756dca62a0SLaurent Vivier                                 * Head select for IWM.
766dca62a0SLaurent Vivier                                 * [CHRP] unused.
776dca62a0SLaurent Vivier                                 * [Macintosh Family] "Floppy disk
786dca62a0SLaurent Vivier                                 * state-control line SEL" on all but IIfx
796dca62a0SLaurent Vivier                                 */
806dca62a0SLaurent Vivier #define VIA1A_vOverlay  0x10   /*
816dca62a0SLaurent Vivier                                 * [Macintosh Family] On SE/30,II,IIx,IIcx
826dca62a0SLaurent Vivier                                 * this bit enables the "Overlay" address
836dca62a0SLaurent Vivier                                 * map in the address decoders as it is on
846dca62a0SLaurent Vivier                                 * reset for mapping the ROM over the reset
856dca62a0SLaurent Vivier                                 * vector. 1=use overlay map.
866dca62a0SLaurent Vivier                                 * On the IIci,IIfx it is another bit of the
876dca62a0SLaurent Vivier                                 * CPU ID: 0=normal IIci, 1=IIci with parity
886dca62a0SLaurent Vivier                                 * feature or IIfx.
896dca62a0SLaurent Vivier                                 * [CHRP] En WaitReqA: Lets the WaitReq_L
906dca62a0SLaurent Vivier                                 * signal from port A of the SCC appear
916dca62a0SLaurent Vivier                                 * on the PA7 input pin (CHRP). Output.
926dca62a0SLaurent Vivier                                 * [MkLinux] "Drive Select"
936dca62a0SLaurent Vivier                                 *  (with 0x20 being 'disk head select')
946dca62a0SLaurent Vivier                                 */
956dca62a0SLaurent Vivier #define VIA1A_vSync     0x08   /*
966dca62a0SLaurent Vivier                                 * [CHRP] Sync Modem: modem clock select:
976dca62a0SLaurent Vivier                                 * 1: select the external serial clock to
986dca62a0SLaurent Vivier                                 *    drive the SCC's /RTxCA pin.
996dca62a0SLaurent Vivier                                 * 0: Select the 3.6864MHz clock to drive
1006dca62a0SLaurent Vivier                                 *    the SCC cell.
1016dca62a0SLaurent Vivier                                 * [Macintosh Family] Correct on all but IIfx
1026dca62a0SLaurent Vivier                                 */
1036dca62a0SLaurent Vivier 
1046dca62a0SLaurent Vivier /*
1056dca62a0SLaurent Vivier  * Macintosh Family Hardware sez: bits 0-2 of VIA1A are volume control
1066dca62a0SLaurent Vivier  * on Macs which had the PWM sound hardware.  Reserved on newer models.
1076dca62a0SLaurent Vivier  * On IIci,IIfx, bits 1-2 are the rest of the CPU ID:
1086dca62a0SLaurent Vivier  * bit 2: 1=IIci, 0=IIfx
1096dca62a0SLaurent Vivier  * bit 1: 1 on both IIci and IIfx.
1106dca62a0SLaurent Vivier  * MkLinux sez bit 0 is 'burnin flag' in this case.
1116dca62a0SLaurent Vivier  * CHRP sez: VIA1A bits 0-2 and 5 are 'unused': if programmed as
1126dca62a0SLaurent Vivier  * inputs, these bits will read 0.
1136dca62a0SLaurent Vivier  */
1146dca62a0SLaurent Vivier #define VIA1A_vVolume   0x07    /* Audio volume mask for PWM */
1156dca62a0SLaurent Vivier #define VIA1A_CPUID0    0x02    /* CPU id bit 0 on RBV, others */
1166dca62a0SLaurent Vivier #define VIA1A_CPUID1    0x04    /* CPU id bit 0 on RBV, others */
1176dca62a0SLaurent Vivier #define VIA1A_CPUID2    0x10    /* CPU id bit 0 on RBV, others */
1186dca62a0SLaurent Vivier #define VIA1A_CPUID3    0x40    /* CPU id bit 0 on RBV, others */
1196dca62a0SLaurent Vivier 
1206dca62a0SLaurent Vivier /*
1216dca62a0SLaurent Vivier  * Info on VIA1B is from Macintosh Family Hardware & MkLinux.
1226dca62a0SLaurent Vivier  * CHRP offers no info.
1236dca62a0SLaurent Vivier  */
1246dca62a0SLaurent Vivier #define VIA1B_vSound   0x80    /*
1256dca62a0SLaurent Vivier                                 * Sound enable (for compatibility with
1266dca62a0SLaurent Vivier                                 * PWM hardware) 0=enabled.
1276dca62a0SLaurent Vivier                                 * Also, on IIci w/parity, shows parity error
1286dca62a0SLaurent Vivier                                 * 0=error, 1=OK.
1296dca62a0SLaurent Vivier                                 */
1306dca62a0SLaurent Vivier #define VIA1B_vMystery 0x40    /*
1316dca62a0SLaurent Vivier                                 * On IIci, parity enable. 0=enabled,1=disabled
1326dca62a0SLaurent Vivier                                 * On SE/30, vertical sync interrupt enable.
1336dca62a0SLaurent Vivier                                 * 0=enabled. This vSync interrupt shows up
1346dca62a0SLaurent Vivier                                 * as a slot $E interrupt.
1356dca62a0SLaurent Vivier                                 */
1366dca62a0SLaurent Vivier #define VIA1B_vADBS2   0x20    /* ADB state input bit 1 (unused on IIfx) */
1376dca62a0SLaurent Vivier #define VIA1B_vADBS1   0x10    /* ADB state input bit 0 (unused on IIfx) */
1386dca62a0SLaurent Vivier #define VIA1B_vADBInt  0x08    /* ADB interrupt 0=interrupt (unused on IIfx)*/
1396dca62a0SLaurent Vivier #define VIA1B_vRTCEnb  0x04    /* Enable Real time clock. 0=enabled. */
1406dca62a0SLaurent Vivier #define VIA1B_vRTCClk  0x02    /* Real time clock serial-clock line. */
1416dca62a0SLaurent Vivier #define VIA1B_vRTCData 0x01    /* Real time clock serial-data line. */
1426dca62a0SLaurent Vivier 
1436dca62a0SLaurent Vivier /*
1446dca62a0SLaurent Vivier  *    VIA2 A register is the interrupt lines raised off the nubus
1456dca62a0SLaurent Vivier  *    slots.
1466dca62a0SLaurent Vivier  *      The below info is from 'Macintosh Family Hardware.'
1476dca62a0SLaurent Vivier  *      MkLinux calls the 'IIci internal video IRQ' below the 'RBV slot 0 irq.'
1486dca62a0SLaurent Vivier  *      It also notes that the slot $9 IRQ is the 'Ethernet IRQ' and
1496dca62a0SLaurent Vivier  *      defines the 'Video IRQ' as 0x40 for the 'EVR' VIA work-alike.
1506dca62a0SLaurent Vivier  *      Perhaps OSS uses vRAM1 and vRAM2 for ADB.
1516dca62a0SLaurent Vivier  */
1526dca62a0SLaurent Vivier 
1536dca62a0SLaurent Vivier #define VIA2A_vRAM1    0x80    /* RAM size bit 1 (IIci: reserved) */
1546dca62a0SLaurent Vivier #define VIA2A_vRAM0    0x40    /* RAM size bit 0 (IIci: internal video IRQ) */
1556dca62a0SLaurent Vivier #define VIA2A_vIRQE    0x20    /* IRQ from slot $E */
1566dca62a0SLaurent Vivier #define VIA2A_vIRQD    0x10    /* IRQ from slot $D */
1576dca62a0SLaurent Vivier #define VIA2A_vIRQC    0x08    /* IRQ from slot $C */
1586dca62a0SLaurent Vivier #define VIA2A_vIRQB    0x04    /* IRQ from slot $B */
1596dca62a0SLaurent Vivier #define VIA2A_vIRQA    0x02    /* IRQ from slot $A */
1606dca62a0SLaurent Vivier #define VIA2A_vIRQ9    0x01    /* IRQ from slot $9 */
1616dca62a0SLaurent Vivier 
1626dca62a0SLaurent Vivier /*
1636dca62a0SLaurent Vivier  * RAM size bits decoded as follows:
1646dca62a0SLaurent Vivier  * bit1 bit0  size of ICs in bank A
1656dca62a0SLaurent Vivier  *  0    0    256 kbit
1666dca62a0SLaurent Vivier  *  0    1    1 Mbit
1676dca62a0SLaurent Vivier  *  1    0    4 Mbit
1686dca62a0SLaurent Vivier  *  1    1   16 Mbit
1696dca62a0SLaurent Vivier  */
1706dca62a0SLaurent Vivier 
1716dca62a0SLaurent Vivier /*
1726dca62a0SLaurent Vivier  *    Register B has the fun stuff in it
1736dca62a0SLaurent Vivier  */
1746dca62a0SLaurent Vivier 
1756dca62a0SLaurent Vivier #define VIA2B_vVBL    0x80    /*
1766dca62a0SLaurent Vivier                                * VBL output to VIA1 (60.15Hz) driven by
1776dca62a0SLaurent Vivier                                * timer T1.
1786dca62a0SLaurent Vivier                                * on IIci, parity test: 0=test mode.
1796dca62a0SLaurent Vivier                                * [MkLinux] RBV_PARODD: 1=odd,0=even.
1806dca62a0SLaurent Vivier                                */
1816dca62a0SLaurent Vivier #define VIA2B_vSndJck 0x40    /*
1826dca62a0SLaurent Vivier                                * External sound jack status.
1836dca62a0SLaurent Vivier                                * 0=plug is inserted.  On SE/30, always 0
1846dca62a0SLaurent Vivier                                */
1856dca62a0SLaurent Vivier #define VIA2B_vTfr0   0x20    /* Transfer mode bit 0 ack from NuBus */
1866dca62a0SLaurent Vivier #define VIA2B_vTfr1   0x10    /* Transfer mode bit 1 ack from NuBus */
1876dca62a0SLaurent Vivier #define VIA2B_vMode32 0x08    /*
1886dca62a0SLaurent Vivier                                * 24/32bit switch - doubles as cache flush
1896dca62a0SLaurent Vivier                                * on II, AMU/PMMU control.
1906dca62a0SLaurent Vivier                                *   if AMU, 0=24bit to 32bit translation
1916dca62a0SLaurent Vivier                                *   if PMMU, 1=PMMU is accessing page table.
1926dca62a0SLaurent Vivier                                * on SE/30 tied low.
1936dca62a0SLaurent Vivier                                * on IIx,IIcx,IIfx, unused.
1946dca62a0SLaurent Vivier                                * on IIci/RBV, cache control. 0=flush cache.
1956dca62a0SLaurent Vivier                                */
1966dca62a0SLaurent Vivier #define VIA2B_vPower  0x04   /*
1976dca62a0SLaurent Vivier                               * Power off, 0=shut off power.
1986dca62a0SLaurent Vivier                               * on SE/30 this signal sent to PDS card.
1996dca62a0SLaurent Vivier                               */
2006dca62a0SLaurent Vivier #define VIA2B_vBusLk  0x02   /*
2016dca62a0SLaurent Vivier                               * Lock NuBus transactions, 0=locked.
2026dca62a0SLaurent Vivier                               * on SE/30 sent to PDS card.
2036dca62a0SLaurent Vivier                               */
2046dca62a0SLaurent Vivier #define VIA2B_vCDis   0x01   /*
2056dca62a0SLaurent Vivier                               * Cache control. On IIci, 1=disable cache card
2066dca62a0SLaurent Vivier                               * on others, 0=disable processor's instruction
2076dca62a0SLaurent Vivier                               * and data caches.
2086dca62a0SLaurent Vivier                               */
2096dca62a0SLaurent Vivier 
2106dca62a0SLaurent Vivier /* interrupt flags */
2116dca62a0SLaurent Vivier 
2126dca62a0SLaurent Vivier #define IRQ_SET         0x80
2136dca62a0SLaurent Vivier 
2146dca62a0SLaurent Vivier /* common */
2156dca62a0SLaurent Vivier 
2166dca62a0SLaurent Vivier #define VIA_IRQ_TIMER1      0x40
2176dca62a0SLaurent Vivier #define VIA_IRQ_TIMER2      0x20
2186dca62a0SLaurent Vivier 
2196dca62a0SLaurent Vivier /*
2206dca62a0SLaurent Vivier  * Apple sez: http://developer.apple.com/technotes/ov/ov_04.html
2216dca62a0SLaurent Vivier  * Another example of a valid function that has no ROM support is the use
2226dca62a0SLaurent Vivier  * of the alternate video page for page-flipping animation. Since there
2236dca62a0SLaurent Vivier  * is no ROM call to flip pages, it is necessary to go play with the
2246dca62a0SLaurent Vivier  * right bit in the VIA chip (6522 Versatile Interface Adapter).
2256dca62a0SLaurent Vivier  * [CSA: don't know which one this is, but it's one of 'em!]
2266dca62a0SLaurent Vivier  */
2276dca62a0SLaurent Vivier 
2286dca62a0SLaurent Vivier /*
2296dca62a0SLaurent Vivier  *    6522 registers - see databook.
2306dca62a0SLaurent Vivier  * CSA: Assignments for VIA1 confirmed from CHRP spec.
2316dca62a0SLaurent Vivier  */
2326dca62a0SLaurent Vivier 
2336dca62a0SLaurent Vivier /* partial address decode.  0xYYXX : XX part for RBV, YY part for VIA */
2346dca62a0SLaurent Vivier /* Note: 15 VIA regs, 8 RBV regs */
2356dca62a0SLaurent Vivier 
2366dca62a0SLaurent Vivier #define vBufB    0x0000  /* [VIA/RBV]  Register B */
2376dca62a0SLaurent Vivier #define vBufAH   0x0200  /* [VIA only] Buffer A, with handshake. DON'T USE! */
2386dca62a0SLaurent Vivier #define vDirB    0x0400  /* [VIA only] Data Direction Register B. */
2396dca62a0SLaurent Vivier #define vDirA    0x0600  /* [VIA only] Data Direction Register A. */
2406dca62a0SLaurent Vivier #define vT1CL    0x0800  /* [VIA only] Timer one counter low. */
2416dca62a0SLaurent Vivier #define vT1CH    0x0a00  /* [VIA only] Timer one counter high. */
2426dca62a0SLaurent Vivier #define vT1LL    0x0c00  /* [VIA only] Timer one latches low. */
2436dca62a0SLaurent Vivier #define vT1LH    0x0e00  /* [VIA only] Timer one latches high. */
2446dca62a0SLaurent Vivier #define vT2CL    0x1000  /* [VIA only] Timer two counter low. */
2456dca62a0SLaurent Vivier #define vT2CH    0x1200  /* [VIA only] Timer two counter high. */
2466dca62a0SLaurent Vivier #define vSR      0x1400  /* [VIA only] Shift register. */
2476dca62a0SLaurent Vivier #define vACR     0x1600  /* [VIA only] Auxilary control register. */
2486dca62a0SLaurent Vivier #define vPCR     0x1800  /* [VIA only] Peripheral control register. */
2496dca62a0SLaurent Vivier                          /*
2506dca62a0SLaurent Vivier                           *           CHRP sez never ever to *write* this.
2516dca62a0SLaurent Vivier                           *            Mac family says never to *change* this.
2526dca62a0SLaurent Vivier                           * In fact we need to initialize it once at start.
2536dca62a0SLaurent Vivier                           */
2546dca62a0SLaurent Vivier #define vIFR     0x1a00  /* [VIA/RBV]  Interrupt flag register. */
2556dca62a0SLaurent Vivier #define vIER     0x1c00  /* [VIA/RBV]  Interrupt enable register. */
2566dca62a0SLaurent Vivier #define vBufA    0x1e00  /* [VIA/RBV] register A (no handshake) */
2576dca62a0SLaurent Vivier 
2586dca62a0SLaurent Vivier /* from linux 2.6 drivers/macintosh/via-macii.c */
2596dca62a0SLaurent Vivier 
2606dca62a0SLaurent Vivier /* Bits in ACR */
2616dca62a0SLaurent Vivier 
2626dca62a0SLaurent Vivier #define VIA1ACR_vShiftCtrl         0x1c        /* Shift register control bits */
2636dca62a0SLaurent Vivier #define VIA1ACR_vShiftExtClk       0x0c        /* Shift on external clock */
2646dca62a0SLaurent Vivier #define VIA1ACR_vShiftOut          0x10        /* Shift out if 1 */
2656dca62a0SLaurent Vivier 
2666dca62a0SLaurent Vivier /*
2676dca62a0SLaurent Vivier  * Apple Macintosh Family Hardware Refenece
2686dca62a0SLaurent Vivier  * Table 19-10 ADB transaction states
2696dca62a0SLaurent Vivier  */
2706dca62a0SLaurent Vivier 
27187a34e2aSLaurent Vivier #define ADB_STATE_NEW       0
27287a34e2aSLaurent Vivier #define ADB_STATE_EVEN      1
27387a34e2aSLaurent Vivier #define ADB_STATE_ODD       2
27487a34e2aSLaurent Vivier #define ADB_STATE_IDLE      3
27587a34e2aSLaurent Vivier 
2766dca62a0SLaurent Vivier #define VIA1B_vADB_StateMask    (VIA1B_vADBS1 | VIA1B_vADBS2)
2776dca62a0SLaurent Vivier #define VIA1B_vADB_StateShift   4
2786dca62a0SLaurent Vivier 
2796dca62a0SLaurent Vivier #define VIA_TIMER_FREQ (783360)
28087a34e2aSLaurent Vivier #define VIA_ADB_POLL_FREQ 50 /* XXX: not real */
2816dca62a0SLaurent Vivier 
28282ff856fSMark Cave-Ayland /*
28382ff856fSMark Cave-Ayland  * Guide to the Macintosh Family Hardware ch. 12 "Displays" p. 401 gives the
28482ff856fSMark Cave-Ayland  * precise 60Hz interrupt frequency as ~60.15Hz with a period of 16625.8 us
28582ff856fSMark Cave-Ayland  */
28682ff856fSMark Cave-Ayland #define VIA_60HZ_TIMER_PERIOD_NS   16625800
28782ff856fSMark Cave-Ayland 
2886dca62a0SLaurent Vivier /* VIA returns time offset from Jan 1, 1904, not 1970 */
2896dca62a0SLaurent Vivier #define RTC_OFFSET 2082844800
2906dca62a0SLaurent Vivier 
291b2619c15SLaurent Vivier enum {
292b2619c15SLaurent Vivier     REG_0,
293b2619c15SLaurent Vivier     REG_1,
294b2619c15SLaurent Vivier     REG_2,
295b2619c15SLaurent Vivier     REG_3,
296b2619c15SLaurent Vivier     REG_TEST,
297b2619c15SLaurent Vivier     REG_WPROTECT,
298b2619c15SLaurent Vivier     REG_PRAM_ADDR,
299b2619c15SLaurent Vivier     REG_PRAM_ADDR_LAST = REG_PRAM_ADDR + 19,
300b2619c15SLaurent Vivier     REG_PRAM_SECT,
301b2619c15SLaurent Vivier     REG_PRAM_SECT_LAST = REG_PRAM_SECT + 7,
302b2619c15SLaurent Vivier     REG_INVALID,
303b2619c15SLaurent Vivier     REG_EMPTY = 0xff,
304b2619c15SLaurent Vivier };
305b2619c15SLaurent Vivier 
3064c8f4ab4SMark Cave-Ayland static void via1_sixty_hz_update(MOS6522Q800VIA1State *v1s)
3076dca62a0SLaurent Vivier {
3086dca62a0SLaurent Vivier     /* 60 Hz irq */
30982ff856fSMark Cave-Ayland     v1s->next_sixty_hz = (qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) +
31082ff856fSMark Cave-Ayland                           VIA_60HZ_TIMER_PERIOD_NS) /
31182ff856fSMark Cave-Ayland                           VIA_60HZ_TIMER_PERIOD_NS * VIA_60HZ_TIMER_PERIOD_NS;
3124c8f4ab4SMark Cave-Ayland     timer_mod(v1s->sixty_hz_timer, v1s->next_sixty_hz);
3136dca62a0SLaurent Vivier }
3146dca62a0SLaurent Vivier 
3156dca62a0SLaurent Vivier static void via1_one_second_update(MOS6522Q800VIA1State *v1s)
3166dca62a0SLaurent Vivier {
3176dca62a0SLaurent Vivier     v1s->next_second = (qemu_clock_get_ms(QEMU_CLOCK_VIRTUAL) + 1000) /
3186dca62a0SLaurent Vivier                        1000 * 1000;
3196dca62a0SLaurent Vivier     timer_mod(v1s->one_second_timer, v1s->next_second);
3206dca62a0SLaurent Vivier }
3216dca62a0SLaurent Vivier 
3224c8f4ab4SMark Cave-Ayland static void via1_sixty_hz(void *opaque)
3236dca62a0SLaurent Vivier {
3246dca62a0SLaurent Vivier     MOS6522Q800VIA1State *v1s = opaque;
3256dca62a0SLaurent Vivier     MOS6522State *s = MOS6522(v1s);
3269db70dacSEduardo Habkost     MOS6522DeviceClass *mdc = MOS6522_GET_CLASS(s);
3276dca62a0SLaurent Vivier 
3284c8f4ab4SMark Cave-Ayland     s->ifr |= VIA1_IRQ_60HZ;
3296dca62a0SLaurent Vivier     mdc->update_irq(s);
3306dca62a0SLaurent Vivier 
3314c8f4ab4SMark Cave-Ayland     via1_sixty_hz_update(v1s);
3326dca62a0SLaurent Vivier }
3336dca62a0SLaurent Vivier 
3346dca62a0SLaurent Vivier static void via1_one_second(void *opaque)
3356dca62a0SLaurent Vivier {
3366dca62a0SLaurent Vivier     MOS6522Q800VIA1State *v1s = opaque;
3376dca62a0SLaurent Vivier     MOS6522State *s = MOS6522(v1s);
3389db70dacSEduardo Habkost     MOS6522DeviceClass *mdc = MOS6522_GET_CLASS(s);
3396dca62a0SLaurent Vivier 
3406dca62a0SLaurent Vivier     s->ifr |= VIA1_IRQ_ONE_SECOND;
3416dca62a0SLaurent Vivier     mdc->update_irq(s);
3426dca62a0SLaurent Vivier 
3436dca62a0SLaurent Vivier     via1_one_second_update(v1s);
3446dca62a0SLaurent Vivier }
3456dca62a0SLaurent Vivier 
3466dca62a0SLaurent Vivier static void via1_irq_request(void *opaque, int irq, int level)
3476dca62a0SLaurent Vivier {
3486dca62a0SLaurent Vivier     MOS6522Q800VIA1State *v1s = opaque;
3496dca62a0SLaurent Vivier     MOS6522State *s = MOS6522(v1s);
3509db70dacSEduardo Habkost     MOS6522DeviceClass *mdc = MOS6522_GET_CLASS(s);
3516dca62a0SLaurent Vivier 
3526dca62a0SLaurent Vivier     if (level) {
3536dca62a0SLaurent Vivier         s->ifr |= 1 << irq;
3546dca62a0SLaurent Vivier     } else {
3556dca62a0SLaurent Vivier         s->ifr &= ~(1 << irq);
3566dca62a0SLaurent Vivier     }
3576dca62a0SLaurent Vivier 
3586dca62a0SLaurent Vivier     mdc->update_irq(s);
3596dca62a0SLaurent Vivier }
3606dca62a0SLaurent Vivier 
3616dca62a0SLaurent Vivier static void via2_irq_request(void *opaque, int irq, int level)
3626dca62a0SLaurent Vivier {
3636dca62a0SLaurent Vivier     MOS6522Q800VIA2State *v2s = opaque;
3646dca62a0SLaurent Vivier     MOS6522State *s = MOS6522(v2s);
3659db70dacSEduardo Habkost     MOS6522DeviceClass *mdc = MOS6522_GET_CLASS(s);
3666dca62a0SLaurent Vivier 
3676dca62a0SLaurent Vivier     if (level) {
3686dca62a0SLaurent Vivier         s->ifr |= 1 << irq;
3696dca62a0SLaurent Vivier     } else {
3706dca62a0SLaurent Vivier         s->ifr &= ~(1 << irq);
3716dca62a0SLaurent Vivier     }
3726dca62a0SLaurent Vivier 
3736dca62a0SLaurent Vivier     mdc->update_irq(s);
3746dca62a0SLaurent Vivier }
3756dca62a0SLaurent Vivier 
376eb064db9SLaurent Vivier 
3778064d7bbSMark Cave-Ayland static void pram_update(MOS6522Q800VIA1State *v1s)
378eb064db9SLaurent Vivier {
3798064d7bbSMark Cave-Ayland     if (v1s->blk) {
3808064d7bbSMark Cave-Ayland         if (blk_pwrite(v1s->blk, 0, v1s->PRAM, sizeof(v1s->PRAM), 0) < 0) {
38180aab795SLaurent Vivier             qemu_log("pram_update: cannot write to file\n");
38280aab795SLaurent Vivier         }
383eb064db9SLaurent Vivier     }
384eb064db9SLaurent Vivier }
385eb064db9SLaurent Vivier 
386b2619c15SLaurent Vivier /*
387b2619c15SLaurent Vivier  * RTC Commands
388b2619c15SLaurent Vivier  *
389b2619c15SLaurent Vivier  * Command byte    Register addressed by the command
390b2619c15SLaurent Vivier  *
391b2619c15SLaurent Vivier  * z0000001        Seconds register 0 (lowest-order byte)
392b2619c15SLaurent Vivier  * z0000101        Seconds register 1
393b2619c15SLaurent Vivier  * z0001001        Seconds register 2
394b2619c15SLaurent Vivier  * z0001101        Seconds register 3 (highest-order byte)
395b2619c15SLaurent Vivier  * 00110001        Test register (write-only)
396b2619c15SLaurent Vivier  * 00110101        Write-Protect Register (write-only)
397b2619c15SLaurent Vivier  * z010aa01        RAM address 100aa ($10-$13) (first 20 bytes only)
398b2619c15SLaurent Vivier  * z1aaaa01        RAM address 0aaaa ($00-$0F) (first 20 bytes only)
399b2619c15SLaurent Vivier  * z0111aaa        Extended memory designator and sector number
400b2619c15SLaurent Vivier  *
401b2619c15SLaurent Vivier  * For a read request, z=1, for a write z=0
402b2619c15SLaurent Vivier  * The letter a indicates bits whose value depend on what parameter
403b2619c15SLaurent Vivier  * RAM byte you want to address
404b2619c15SLaurent Vivier  */
405b2619c15SLaurent Vivier static int via1_rtc_compact_cmd(uint8_t value)
406b2619c15SLaurent Vivier {
407b2619c15SLaurent Vivier     uint8_t read = value & 0x80;
408b2619c15SLaurent Vivier 
409b2619c15SLaurent Vivier     value &= 0x7f;
410b2619c15SLaurent Vivier 
411b2619c15SLaurent Vivier     /* the last 2 bits of a command byte must always be 0b01 ... */
412b2619c15SLaurent Vivier     if ((value & 0x78) == 0x38) {
413b2619c15SLaurent Vivier         /* except for the extended memory designator */
414b2619c15SLaurent Vivier         return read | (REG_PRAM_SECT + (value & 0x07));
415b2619c15SLaurent Vivier     }
416b2619c15SLaurent Vivier     if ((value & 0x03) == 0x01) {
417b2619c15SLaurent Vivier         value >>= 2;
418b2619c15SLaurent Vivier         if ((value & 0x1c) == 0) {
419b2619c15SLaurent Vivier             /* seconds registers */
420b2619c15SLaurent Vivier             return read | (REG_0 + (value & 0x03));
421b2619c15SLaurent Vivier         } else if ((value == 0x0c) && !read) {
422b2619c15SLaurent Vivier             return REG_TEST;
423b2619c15SLaurent Vivier         } else if ((value == 0x0d) && !read) {
424b2619c15SLaurent Vivier             return REG_WPROTECT;
425b2619c15SLaurent Vivier         } else if ((value & 0x1c) == 0x08) {
426b2619c15SLaurent Vivier             /* RAM address 0x10 to 0x13 */
427b2619c15SLaurent Vivier             return read | (REG_PRAM_ADDR + 0x10 + (value & 0x03));
428b2619c15SLaurent Vivier         } else if ((value & 0x43) == 0x41) {
429b2619c15SLaurent Vivier             /* RAM address 0x00 to 0x0f */
430b2619c15SLaurent Vivier             return read | (REG_PRAM_ADDR + (value & 0x0f));
431b2619c15SLaurent Vivier         }
432b2619c15SLaurent Vivier     }
433b2619c15SLaurent Vivier     return REG_INVALID;
434b2619c15SLaurent Vivier }
435b2619c15SLaurent Vivier 
436741258b0SMark Cave-Ayland static void via1_rtc_update(MOS6522Q800VIA1State *v1s)
4376dca62a0SLaurent Vivier {
4386dca62a0SLaurent Vivier     MOS6522State *s = MOS6522(v1s);
439b2619c15SLaurent Vivier     int cmd, sector, addr;
440b2619c15SLaurent Vivier     uint32_t time;
4416dca62a0SLaurent Vivier 
4426dca62a0SLaurent Vivier     if (s->b & VIA1B_vRTCEnb) {
4436dca62a0SLaurent Vivier         return;
4446dca62a0SLaurent Vivier     }
4456dca62a0SLaurent Vivier 
4466dca62a0SLaurent Vivier     if (s->dirb & VIA1B_vRTCData) {
4476dca62a0SLaurent Vivier         /* send bits to the RTC */
4486dca62a0SLaurent Vivier         if (!(v1s->last_b & VIA1B_vRTCClk) && (s->b & VIA1B_vRTCClk)) {
449741258b0SMark Cave-Ayland             v1s->data_out <<= 1;
450741258b0SMark Cave-Ayland             v1s->data_out |= s->b & VIA1B_vRTCData;
451741258b0SMark Cave-Ayland             v1s->data_out_cnt++;
4526dca62a0SLaurent Vivier         }
453741258b0SMark Cave-Ayland         trace_via1_rtc_update_data_out(v1s->data_out_cnt, v1s->data_out);
4546dca62a0SLaurent Vivier     } else {
455741258b0SMark Cave-Ayland         trace_via1_rtc_update_data_in(v1s->data_in_cnt, v1s->data_in);
4566dca62a0SLaurent Vivier         /* receive bits from the RTC */
4576dca62a0SLaurent Vivier         if ((v1s->last_b & VIA1B_vRTCClk) &&
4586dca62a0SLaurent Vivier             !(s->b & VIA1B_vRTCClk) &&
459741258b0SMark Cave-Ayland             v1s->data_in_cnt) {
4606dca62a0SLaurent Vivier             s->b = (s->b & ~VIA1B_vRTCData) |
461741258b0SMark Cave-Ayland                    ((v1s->data_in >> 7) & VIA1B_vRTCData);
462741258b0SMark Cave-Ayland             v1s->data_in <<= 1;
463741258b0SMark Cave-Ayland             v1s->data_in_cnt--;
4646dca62a0SLaurent Vivier         }
465b2619c15SLaurent Vivier         return;
4666dca62a0SLaurent Vivier     }
4676dca62a0SLaurent Vivier 
468741258b0SMark Cave-Ayland     if (v1s->data_out_cnt != 8) {
469b2619c15SLaurent Vivier         return;
470b2619c15SLaurent Vivier     }
471b2619c15SLaurent Vivier 
472741258b0SMark Cave-Ayland     v1s->data_out_cnt = 0;
4736dca62a0SLaurent Vivier 
474741258b0SMark Cave-Ayland     trace_via1_rtc_internal_status(v1s->cmd, v1s->alt, v1s->data_out);
475b2619c15SLaurent Vivier     /* first byte: it's a command */
476741258b0SMark Cave-Ayland     if (v1s->cmd == REG_EMPTY) {
477b2619c15SLaurent Vivier 
478741258b0SMark Cave-Ayland         cmd = via1_rtc_compact_cmd(v1s->data_out);
479b2619c15SLaurent Vivier         trace_via1_rtc_internal_cmd(cmd);
480b2619c15SLaurent Vivier 
481b2619c15SLaurent Vivier         if (cmd == REG_INVALID) {
482741258b0SMark Cave-Ayland             trace_via1_rtc_cmd_invalid(v1s->data_out);
483b2619c15SLaurent Vivier             return;
4846dca62a0SLaurent Vivier         }
485b2619c15SLaurent Vivier 
486b2619c15SLaurent Vivier         if (cmd & 0x80) { /* this is a read command */
487b2619c15SLaurent Vivier             switch (cmd & 0x7f) {
488b2619c15SLaurent Vivier             case REG_0...REG_3: /* seconds registers */
489b2619c15SLaurent Vivier                 /*
490b2619c15SLaurent Vivier                  * register 0 is lowest-order byte
491b2619c15SLaurent Vivier                  * register 3 is highest-order byte
492b2619c15SLaurent Vivier                  */
493b2619c15SLaurent Vivier 
494741258b0SMark Cave-Ayland                 time = v1s->tick_offset + (qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL)
495b2619c15SLaurent Vivier                        / NANOSECONDS_PER_SECOND);
496b2619c15SLaurent Vivier                 trace_via1_rtc_internal_time(time);
497741258b0SMark Cave-Ayland                 v1s->data_in = (time >> ((cmd & 0x03) << 3)) & 0xff;
498741258b0SMark Cave-Ayland                 v1s->data_in_cnt = 8;
499b2619c15SLaurent Vivier                 trace_via1_rtc_cmd_seconds_read((cmd & 0x7f) - REG_0,
500741258b0SMark Cave-Ayland                                                 v1s->data_in);
501b2619c15SLaurent Vivier                 break;
502b2619c15SLaurent Vivier             case REG_PRAM_ADDR...REG_PRAM_ADDR_LAST:
503b2619c15SLaurent Vivier                 /* PRAM address 0x00 -> 0x13 */
504741258b0SMark Cave-Ayland                 v1s->data_in = v1s->PRAM[(cmd & 0x7f) - REG_PRAM_ADDR];
505741258b0SMark Cave-Ayland                 v1s->data_in_cnt = 8;
506b2619c15SLaurent Vivier                 trace_via1_rtc_cmd_pram_read((cmd & 0x7f) - REG_PRAM_ADDR,
507741258b0SMark Cave-Ayland                                              v1s->data_in);
508b2619c15SLaurent Vivier                 break;
509b2619c15SLaurent Vivier             case REG_PRAM_SECT...REG_PRAM_SECT_LAST:
510b2619c15SLaurent Vivier                 /*
511b2619c15SLaurent Vivier                  * extended memory designator and sector number
512b2619c15SLaurent Vivier                  * the only two-byte read command
513b2619c15SLaurent Vivier                  */
514b2619c15SLaurent Vivier                 trace_via1_rtc_internal_set_cmd(cmd);
515741258b0SMark Cave-Ayland                 v1s->cmd = cmd;
516b2619c15SLaurent Vivier                 break;
517b2619c15SLaurent Vivier             default:
518b2619c15SLaurent Vivier                 g_assert_not_reached();
519b2619c15SLaurent Vivier                 break;
520b2619c15SLaurent Vivier             }
521b2619c15SLaurent Vivier             return;
522b2619c15SLaurent Vivier         }
523b2619c15SLaurent Vivier 
524b2619c15SLaurent Vivier         /* this is a write command, needs a parameter */
525741258b0SMark Cave-Ayland         if (cmd == REG_WPROTECT || !v1s->wprotect) {
526b2619c15SLaurent Vivier             trace_via1_rtc_internal_set_cmd(cmd);
527741258b0SMark Cave-Ayland             v1s->cmd = cmd;
5286dca62a0SLaurent Vivier         } else {
529b2619c15SLaurent Vivier             trace_via1_rtc_internal_ignore_cmd(cmd);
5306dca62a0SLaurent Vivier         }
531b2619c15SLaurent Vivier         return;
5326dca62a0SLaurent Vivier     }
5336dca62a0SLaurent Vivier 
534b2619c15SLaurent Vivier     /* second byte: it's a parameter */
535741258b0SMark Cave-Ayland     if (v1s->alt == REG_EMPTY) {
536741258b0SMark Cave-Ayland         switch (v1s->cmd & 0x7f) {
537b2619c15SLaurent Vivier         case REG_0...REG_3: /* seconds register */
5386dca62a0SLaurent Vivier             /* FIXME */
539741258b0SMark Cave-Ayland             trace_via1_rtc_cmd_seconds_write(v1s->cmd - REG_0, v1s->data_out);
540741258b0SMark Cave-Ayland             v1s->cmd = REG_EMPTY;
541b2619c15SLaurent Vivier             break;
542b2619c15SLaurent Vivier         case REG_TEST:
543b2619c15SLaurent Vivier             /* device control: nothing to do */
544741258b0SMark Cave-Ayland             trace_via1_rtc_cmd_test_write(v1s->data_out);
545741258b0SMark Cave-Ayland             v1s->cmd = REG_EMPTY;
546b2619c15SLaurent Vivier             break;
547b2619c15SLaurent Vivier         case REG_WPROTECT:
5486dca62a0SLaurent Vivier             /* Write Protect register */
549741258b0SMark Cave-Ayland             trace_via1_rtc_cmd_wprotect_write(v1s->data_out);
550741258b0SMark Cave-Ayland             v1s->wprotect = !!(v1s->data_out & 0x80);
551741258b0SMark Cave-Ayland             v1s->cmd = REG_EMPTY;
552b2619c15SLaurent Vivier             break;
553b2619c15SLaurent Vivier         case REG_PRAM_ADDR...REG_PRAM_ADDR_LAST:
554b2619c15SLaurent Vivier             /* PRAM address 0x00 -> 0x13 */
555741258b0SMark Cave-Ayland             trace_via1_rtc_cmd_pram_write(v1s->cmd - REG_PRAM_ADDR,
556741258b0SMark Cave-Ayland                                           v1s->data_out);
557741258b0SMark Cave-Ayland             v1s->PRAM[v1s->cmd - REG_PRAM_ADDR] = v1s->data_out;
5588064d7bbSMark Cave-Ayland             pram_update(v1s);
559741258b0SMark Cave-Ayland             v1s->cmd = REG_EMPTY;
560b2619c15SLaurent Vivier             break;
561b2619c15SLaurent Vivier         case REG_PRAM_SECT...REG_PRAM_SECT_LAST:
562741258b0SMark Cave-Ayland             addr = (v1s->data_out >> 2) & 0x1f;
563741258b0SMark Cave-Ayland             sector = (v1s->cmd & 0x7f) - REG_PRAM_SECT;
564741258b0SMark Cave-Ayland             if (v1s->cmd & 0x80) {
565b2619c15SLaurent Vivier                 /* it's a read */
566741258b0SMark Cave-Ayland                 v1s->data_in = v1s->PRAM[sector * 32 + addr];
567741258b0SMark Cave-Ayland                 v1s->data_in_cnt = 8;
568b2619c15SLaurent Vivier                 trace_via1_rtc_cmd_pram_sect_read(sector, addr,
569b2619c15SLaurent Vivier                                                   sector * 32 + addr,
570741258b0SMark Cave-Ayland                                                   v1s->data_in);
571741258b0SMark Cave-Ayland                 v1s->cmd = REG_EMPTY;
572b2619c15SLaurent Vivier             } else {
573b2619c15SLaurent Vivier                 /* it's a write, we need one more parameter */
574b2619c15SLaurent Vivier                 trace_via1_rtc_internal_set_alt(addr, sector, addr);
575741258b0SMark Cave-Ayland                 v1s->alt = addr;
5766dca62a0SLaurent Vivier             }
577b2619c15SLaurent Vivier             break;
578b2619c15SLaurent Vivier         default:
579b2619c15SLaurent Vivier             g_assert_not_reached();
580b2619c15SLaurent Vivier             break;
5816dca62a0SLaurent Vivier         }
582b2619c15SLaurent Vivier         return;
5836dca62a0SLaurent Vivier     }
584b2619c15SLaurent Vivier 
585b2619c15SLaurent Vivier     /* third byte: it's the data of a REG_PRAM_SECT write */
586741258b0SMark Cave-Ayland     g_assert(REG_PRAM_SECT <= v1s->cmd && v1s->cmd <= REG_PRAM_SECT_LAST);
587741258b0SMark Cave-Ayland     sector = v1s->cmd - REG_PRAM_SECT;
588741258b0SMark Cave-Ayland     v1s->PRAM[sector * 32 + v1s->alt] = v1s->data_out;
5898064d7bbSMark Cave-Ayland     pram_update(v1s);
590741258b0SMark Cave-Ayland     trace_via1_rtc_cmd_pram_sect_write(sector, v1s->alt, sector * 32 + v1s->alt,
591741258b0SMark Cave-Ayland                                        v1s->data_out);
592741258b0SMark Cave-Ayland     v1s->alt = REG_EMPTY;
593741258b0SMark Cave-Ayland     v1s->cmd = REG_EMPTY;
5946dca62a0SLaurent Vivier }
5956dca62a0SLaurent Vivier 
596975fceddSMark Cave-Ayland static void adb_via_poll(void *opaque)
59787a34e2aSLaurent Vivier {
5985f083d42SMark Cave-Ayland     MOS6522Q800VIA1State *v1s = MOS6522_Q800_VIA1(opaque);
599975fceddSMark Cave-Ayland     MOS6522State *s = MOS6522(v1s);
6005f083d42SMark Cave-Ayland     ADBBusState *adb_bus = &v1s->adb_bus;
601975fceddSMark Cave-Ayland     uint8_t obuf[9];
602975fceddSMark Cave-Ayland     uint8_t *data = &s->sr;
603975fceddSMark Cave-Ayland     int olen;
604975fceddSMark Cave-Ayland 
605975fceddSMark Cave-Ayland     /*
606975fceddSMark Cave-Ayland      * Setting vADBInt below indicates that an autopoll reply has been
607975fceddSMark Cave-Ayland      * received, however we must block autopoll until the point where
608975fceddSMark Cave-Ayland      * the entire reply has been read back to the host
609975fceddSMark Cave-Ayland      */
610975fceddSMark Cave-Ayland     adb_autopoll_block(adb_bus);
611975fceddSMark Cave-Ayland 
6125f083d42SMark Cave-Ayland     if (v1s->adb_data_in_size > 0 && v1s->adb_data_in_index == 0) {
613a67ffaf0SMark Cave-Ayland         /*
614a67ffaf0SMark Cave-Ayland          * For older Linux kernels that switch to IDLE mode after sending the
615a67ffaf0SMark Cave-Ayland          * ADB command, detect if there is an existing response and return that
616a67ffaf0SMark Cave-Ayland          * as a a "fake" autopoll reply or bus timeout accordingly
617a67ffaf0SMark Cave-Ayland          */
6185f083d42SMark Cave-Ayland         *data = v1s->adb_data_out[0];
6195f083d42SMark Cave-Ayland         olen = v1s->adb_data_in_size;
620a67ffaf0SMark Cave-Ayland 
621a67ffaf0SMark Cave-Ayland         s->b &= ~VIA1B_vADBInt;
6225f083d42SMark Cave-Ayland         qemu_irq_raise(v1s->adb_data_ready);
623a67ffaf0SMark Cave-Ayland     } else {
624a67ffaf0SMark Cave-Ayland         /*
625a67ffaf0SMark Cave-Ayland          * Otherwise poll as normal
626a67ffaf0SMark Cave-Ayland          */
6275f083d42SMark Cave-Ayland         v1s->adb_data_in_index = 0;
6285f083d42SMark Cave-Ayland         v1s->adb_data_out_index = 0;
629975fceddSMark Cave-Ayland         olen = adb_poll(adb_bus, obuf, adb_bus->autopoll_mask);
630975fceddSMark Cave-Ayland 
631975fceddSMark Cave-Ayland         if (olen > 0) {
632975fceddSMark Cave-Ayland             /* Autopoll response */
633975fceddSMark Cave-Ayland             *data = obuf[0];
634975fceddSMark Cave-Ayland             olen--;
6355f083d42SMark Cave-Ayland             memcpy(v1s->adb_data_in, &obuf[1], olen);
6365f083d42SMark Cave-Ayland             v1s->adb_data_in_size = olen;
637975fceddSMark Cave-Ayland 
638975fceddSMark Cave-Ayland             s->b &= ~VIA1B_vADBInt;
6395f083d42SMark Cave-Ayland             qemu_irq_raise(v1s->adb_data_ready);
640975fceddSMark Cave-Ayland         } else {
6415f083d42SMark Cave-Ayland             *data = v1s->adb_autopoll_cmd;
642975fceddSMark Cave-Ayland             obuf[0] = 0xff;
643975fceddSMark Cave-Ayland             obuf[1] = 0xff;
644975fceddSMark Cave-Ayland             olen = 2;
645975fceddSMark Cave-Ayland 
6465f083d42SMark Cave-Ayland             memcpy(v1s->adb_data_in, obuf, olen);
6475f083d42SMark Cave-Ayland             v1s->adb_data_in_size = olen;
648975fceddSMark Cave-Ayland 
649a67ffaf0SMark Cave-Ayland             s->b &= ~VIA1B_vADBInt;
6505f083d42SMark Cave-Ayland             qemu_irq_raise(v1s->adb_data_ready);
651975fceddSMark Cave-Ayland         }
652975fceddSMark Cave-Ayland     }
653975fceddSMark Cave-Ayland 
654975fceddSMark Cave-Ayland     trace_via1_adb_poll(*data, (s->b & VIA1B_vADBInt) ? "+" : "-",
6555f083d42SMark Cave-Ayland                         adb_bus->status, v1s->adb_data_in_index, olen);
656975fceddSMark Cave-Ayland }
657975fceddSMark Cave-Ayland 
658975fceddSMark Cave-Ayland static int adb_via_send_len(uint8_t data)
659975fceddSMark Cave-Ayland {
660975fceddSMark Cave-Ayland     /* Determine the send length from the given ADB command */
661975fceddSMark Cave-Ayland     uint8_t cmd = data & 0xc;
662975fceddSMark Cave-Ayland     uint8_t reg = data & 0x3;
663975fceddSMark Cave-Ayland 
664975fceddSMark Cave-Ayland     switch (cmd) {
665975fceddSMark Cave-Ayland     case 0x8:
666975fceddSMark Cave-Ayland         /* Listen command */
667975fceddSMark Cave-Ayland         switch (reg) {
668975fceddSMark Cave-Ayland         case 2:
669975fceddSMark Cave-Ayland             /* Register 2 is only used for the keyboard */
670975fceddSMark Cave-Ayland             return 3;
671975fceddSMark Cave-Ayland         case 3:
672975fceddSMark Cave-Ayland             /*
673975fceddSMark Cave-Ayland              * Fortunately our devices only implement writes
674975fceddSMark Cave-Ayland              * to register 3 which is fixed at 2 bytes
675975fceddSMark Cave-Ayland              */
676975fceddSMark Cave-Ayland             return 3;
677975fceddSMark Cave-Ayland         default:
678975fceddSMark Cave-Ayland             qemu_log_mask(LOG_UNIMP, "ADB unknown length for register %d\n",
679975fceddSMark Cave-Ayland                           reg);
680975fceddSMark Cave-Ayland             return 1;
681975fceddSMark Cave-Ayland         }
682975fceddSMark Cave-Ayland     default:
683975fceddSMark Cave-Ayland         /* Talk, BusReset */
684975fceddSMark Cave-Ayland         return 1;
685975fceddSMark Cave-Ayland     }
686975fceddSMark Cave-Ayland }
687975fceddSMark Cave-Ayland 
6885f083d42SMark Cave-Ayland static void adb_via_send(MOS6522Q800VIA1State *v1s, int state, uint8_t data)
689975fceddSMark Cave-Ayland {
690975fceddSMark Cave-Ayland     MOS6522State *ms = MOS6522(v1s);
6915f083d42SMark Cave-Ayland     ADBBusState *adb_bus = &v1s->adb_bus;
692975fceddSMark Cave-Ayland     uint16_t autopoll_mask;
693f3d61457SMark Cave-Ayland 
69487a34e2aSLaurent Vivier     switch (state) {
69587a34e2aSLaurent Vivier     case ADB_STATE_NEW:
696975fceddSMark Cave-Ayland         /*
697975fceddSMark Cave-Ayland          * Command byte: vADBInt tells host autopoll data already present
698975fceddSMark Cave-Ayland          * in VIA shift register and ADB transceiver
699975fceddSMark Cave-Ayland          */
700975fceddSMark Cave-Ayland         adb_autopoll_block(adb_bus);
701975fceddSMark Cave-Ayland 
702975fceddSMark Cave-Ayland         if (adb_bus->status & ADB_STATUS_POLLREPLY) {
703975fceddSMark Cave-Ayland             /* Tell the host the existing data is from autopoll */
704975fceddSMark Cave-Ayland             ms->b &= ~VIA1B_vADBInt;
705975fceddSMark Cave-Ayland         } else {
706975fceddSMark Cave-Ayland             ms->b |= VIA1B_vADBInt;
7075f083d42SMark Cave-Ayland             v1s->adb_data_out_index = 0;
7085f083d42SMark Cave-Ayland             v1s->adb_data_out[v1s->adb_data_out_index++] = data;
709975fceddSMark Cave-Ayland         }
710975fceddSMark Cave-Ayland 
711975fceddSMark Cave-Ayland         trace_via1_adb_send(" NEW", data, (ms->b & VIA1B_vADBInt) ? "+" : "-");
7125f083d42SMark Cave-Ayland         qemu_irq_raise(v1s->adb_data_ready);
71387a34e2aSLaurent Vivier         break;
71487a34e2aSLaurent Vivier 
715975fceddSMark Cave-Ayland     case ADB_STATE_EVEN:
71687a34e2aSLaurent Vivier     case ADB_STATE_ODD:
717975fceddSMark Cave-Ayland         ms->b |= VIA1B_vADBInt;
7185f083d42SMark Cave-Ayland         v1s->adb_data_out[v1s->adb_data_out_index++] = data;
719975fceddSMark Cave-Ayland 
720975fceddSMark Cave-Ayland         trace_via1_adb_send(state == ADB_STATE_EVEN ? "EVEN" : " ODD",
721975fceddSMark Cave-Ayland                             data, (ms->b & VIA1B_vADBInt) ? "+" : "-");
7225f083d42SMark Cave-Ayland         qemu_irq_raise(v1s->adb_data_ready);
72387a34e2aSLaurent Vivier         break;
72487a34e2aSLaurent Vivier 
72587a34e2aSLaurent Vivier     case ADB_STATE_IDLE:
726975fceddSMark Cave-Ayland         return;
72787a34e2aSLaurent Vivier     }
72887a34e2aSLaurent Vivier 
729975fceddSMark Cave-Ayland     /* If the command is complete, execute it */
7305f083d42SMark Cave-Ayland     if (v1s->adb_data_out_index == adb_via_send_len(v1s->adb_data_out[0])) {
7315f083d42SMark Cave-Ayland         v1s->adb_data_in_size = adb_request(adb_bus, v1s->adb_data_in,
7325f083d42SMark Cave-Ayland                                             v1s->adb_data_out,
7335f083d42SMark Cave-Ayland                                             v1s->adb_data_out_index);
7345f083d42SMark Cave-Ayland         v1s->adb_data_in_index = 0;
735975fceddSMark Cave-Ayland 
736975fceddSMark Cave-Ayland         if (adb_bus->status & ADB_STATUS_BUSTIMEOUT) {
737975fceddSMark Cave-Ayland             /*
738975fceddSMark Cave-Ayland              * Bus timeout (but allow first EVEN and ODD byte to indicate
739975fceddSMark Cave-Ayland              * timeout via vADBInt and SRQ status)
740975fceddSMark Cave-Ayland              */
7415f083d42SMark Cave-Ayland             v1s->adb_data_in[0] = 0xff;
7425f083d42SMark Cave-Ayland             v1s->adb_data_in[1] = 0xff;
7435f083d42SMark Cave-Ayland             v1s->adb_data_in_size = 2;
744975fceddSMark Cave-Ayland         }
745975fceddSMark Cave-Ayland 
746975fceddSMark Cave-Ayland         /*
747975fceddSMark Cave-Ayland          * If last command is TALK, store it for use by autopoll and adjust
748975fceddSMark Cave-Ayland          * the autopoll mask accordingly
749975fceddSMark Cave-Ayland          */
7505f083d42SMark Cave-Ayland         if ((v1s->adb_data_out[0] & 0xc) == 0xc) {
7515f083d42SMark Cave-Ayland             v1s->adb_autopoll_cmd = v1s->adb_data_out[0];
752975fceddSMark Cave-Ayland 
7535f083d42SMark Cave-Ayland             autopoll_mask = 1 << (v1s->adb_autopoll_cmd >> 4);
754975fceddSMark Cave-Ayland             adb_set_autopoll_mask(adb_bus, autopoll_mask);
755975fceddSMark Cave-Ayland         }
756975fceddSMark Cave-Ayland     }
757975fceddSMark Cave-Ayland }
758975fceddSMark Cave-Ayland 
7595f083d42SMark Cave-Ayland static void adb_via_receive(MOS6522Q800VIA1State *v1s, int state, uint8_t *data)
760975fceddSMark Cave-Ayland {
761975fceddSMark Cave-Ayland     MOS6522State *ms = MOS6522(v1s);
7625f083d42SMark Cave-Ayland     ADBBusState *adb_bus = &v1s->adb_bus;
763975fceddSMark Cave-Ayland     uint16_t pending;
764975fceddSMark Cave-Ayland 
765975fceddSMark Cave-Ayland     switch (state) {
766975fceddSMark Cave-Ayland     case ADB_STATE_NEW:
767975fceddSMark Cave-Ayland         ms->b |= VIA1B_vADBInt;
768975fceddSMark Cave-Ayland         return;
769975fceddSMark Cave-Ayland 
770975fceddSMark Cave-Ayland     case ADB_STATE_IDLE:
771975fceddSMark Cave-Ayland         ms->b |= VIA1B_vADBInt;
772975fceddSMark Cave-Ayland         adb_autopoll_unblock(adb_bus);
77387a34e2aSLaurent Vivier 
774975fceddSMark Cave-Ayland         trace_via1_adb_receive("IDLE", *data,
775975fceddSMark Cave-Ayland                         (ms->b & VIA1B_vADBInt) ? "+" : "-", adb_bus->status,
7765f083d42SMark Cave-Ayland                         v1s->adb_data_in_index, v1s->adb_data_in_size);
77787a34e2aSLaurent Vivier 
77887a34e2aSLaurent Vivier         break;
779975fceddSMark Cave-Ayland 
780975fceddSMark Cave-Ayland     case ADB_STATE_EVEN:
781975fceddSMark Cave-Ayland     case ADB_STATE_ODD:
7825f083d42SMark Cave-Ayland         switch (v1s->adb_data_in_index) {
783975fceddSMark Cave-Ayland         case 0:
784975fceddSMark Cave-Ayland             /* First EVEN byte: vADBInt indicates bus timeout */
7855f083d42SMark Cave-Ayland             *data = v1s->adb_data_in[v1s->adb_data_in_index];
786975fceddSMark Cave-Ayland             if (adb_bus->status & ADB_STATUS_BUSTIMEOUT) {
787975fceddSMark Cave-Ayland                 ms->b &= ~VIA1B_vADBInt;
788975fceddSMark Cave-Ayland             } else {
789975fceddSMark Cave-Ayland                 ms->b |= VIA1B_vADBInt;
790975fceddSMark Cave-Ayland             }
791975fceddSMark Cave-Ayland 
792975fceddSMark Cave-Ayland             trace_via1_adb_receive(state == ADB_STATE_EVEN ? "EVEN" : " ODD",
793975fceddSMark Cave-Ayland                                    *data, (ms->b & VIA1B_vADBInt) ? "+" : "-",
7945f083d42SMark Cave-Ayland                                    adb_bus->status, v1s->adb_data_in_index,
7955f083d42SMark Cave-Ayland                                    v1s->adb_data_in_size);
796975fceddSMark Cave-Ayland 
7975f083d42SMark Cave-Ayland             v1s->adb_data_in_index++;
7989d39ec70SMark Cave-Ayland             break;
7999d39ec70SMark Cave-Ayland 
8009d39ec70SMark Cave-Ayland         case 1:
8019d39ec70SMark Cave-Ayland             /* First ODD byte: vADBInt indicates SRQ */
8025f083d42SMark Cave-Ayland             *data = v1s->adb_data_in[v1s->adb_data_in_index];
8035f083d42SMark Cave-Ayland             pending = adb_bus->pending & ~(1 << (v1s->adb_autopoll_cmd >> 4));
804975fceddSMark Cave-Ayland             if (pending) {
805975fceddSMark Cave-Ayland                 ms->b &= ~VIA1B_vADBInt;
806975fceddSMark Cave-Ayland             } else {
807975fceddSMark Cave-Ayland                 ms->b |= VIA1B_vADBInt;
808975fceddSMark Cave-Ayland             }
8099d39ec70SMark Cave-Ayland 
8109d39ec70SMark Cave-Ayland             trace_via1_adb_receive(state == ADB_STATE_EVEN ? "EVEN" : " ODD",
8119d39ec70SMark Cave-Ayland                                    *data, (ms->b & VIA1B_vADBInt) ? "+" : "-",
8125f083d42SMark Cave-Ayland                                    adb_bus->status, v1s->adb_data_in_index,
8135f083d42SMark Cave-Ayland                                    v1s->adb_data_in_size);
8149d39ec70SMark Cave-Ayland 
8155f083d42SMark Cave-Ayland             v1s->adb_data_in_index++;
816975fceddSMark Cave-Ayland             break;
817975fceddSMark Cave-Ayland 
818975fceddSMark Cave-Ayland         default:
819975fceddSMark Cave-Ayland             /*
820975fceddSMark Cave-Ayland              * Otherwise vADBInt indicates end of data. Note that Linux
821975fceddSMark Cave-Ayland              * specifically checks for the sequence 0x0 0xff to confirm the
822975fceddSMark Cave-Ayland              * end of the poll reply, so provide these extra bytes below to
823975fceddSMark Cave-Ayland              * keep it happy
824975fceddSMark Cave-Ayland              */
8255f083d42SMark Cave-Ayland             if (v1s->adb_data_in_index < v1s->adb_data_in_size) {
826975fceddSMark Cave-Ayland                 /* Next data byte */
8275f083d42SMark Cave-Ayland                 *data = v1s->adb_data_in[v1s->adb_data_in_index];
828975fceddSMark Cave-Ayland                 ms->b |= VIA1B_vADBInt;
8295f083d42SMark Cave-Ayland             } else if (v1s->adb_data_in_index == v1s->adb_data_in_size) {
830975fceddSMark Cave-Ayland                 if (adb_bus->status & ADB_STATUS_BUSTIMEOUT) {
831975fceddSMark Cave-Ayland                     /* Bus timeout (no more data) */
832975fceddSMark Cave-Ayland                     *data = 0xff;
833975fceddSMark Cave-Ayland                 } else {
834975fceddSMark Cave-Ayland                     /* Return 0x0 after reply */
835975fceddSMark Cave-Ayland                     *data = 0;
836975fceddSMark Cave-Ayland                 }
837975fceddSMark Cave-Ayland                 ms->b &= ~VIA1B_vADBInt;
838975fceddSMark Cave-Ayland             } else {
839975fceddSMark Cave-Ayland                 /* Bus timeout (no more data) */
840975fceddSMark Cave-Ayland                 *data = 0xff;
841975fceddSMark Cave-Ayland                 ms->b &= ~VIA1B_vADBInt;
842975fceddSMark Cave-Ayland                 adb_bus->status = 0;
843975fceddSMark Cave-Ayland                 adb_autopoll_unblock(adb_bus);
844975fceddSMark Cave-Ayland             }
8459d39ec70SMark Cave-Ayland 
8469d39ec70SMark Cave-Ayland             trace_via1_adb_receive(state == ADB_STATE_EVEN ? "EVEN" : " ODD",
8479d39ec70SMark Cave-Ayland                                    *data, (ms->b & VIA1B_vADBInt) ? "+" : "-",
8485f083d42SMark Cave-Ayland                                    adb_bus->status, v1s->adb_data_in_index,
8495f083d42SMark Cave-Ayland                                    v1s->adb_data_in_size);
8509d39ec70SMark Cave-Ayland 
8515f083d42SMark Cave-Ayland             if (v1s->adb_data_in_index <= v1s->adb_data_in_size) {
8525f083d42SMark Cave-Ayland                 v1s->adb_data_in_index++;
8539d39ec70SMark Cave-Ayland             }
854975fceddSMark Cave-Ayland             break;
85587a34e2aSLaurent Vivier         }
85687a34e2aSLaurent Vivier 
8575f083d42SMark Cave-Ayland         qemu_irq_raise(v1s->adb_data_ready);
858975fceddSMark Cave-Ayland         break;
85987a34e2aSLaurent Vivier     }
86087a34e2aSLaurent Vivier }
86187a34e2aSLaurent Vivier 
8625f083d42SMark Cave-Ayland static void via1_adb_update(MOS6522Q800VIA1State *v1s)
86387a34e2aSLaurent Vivier {
86487a34e2aSLaurent Vivier     MOS6522State *s = MOS6522(v1s);
865975fceddSMark Cave-Ayland     int oldstate, state;
86687a34e2aSLaurent Vivier 
867975fceddSMark Cave-Ayland     oldstate = (v1s->last_b & VIA1B_vADB_StateMask) >> VIA1B_vADB_StateShift;
86887a34e2aSLaurent Vivier     state = (s->b & VIA1B_vADB_StateMask) >> VIA1B_vADB_StateShift;
86987a34e2aSLaurent Vivier 
870975fceddSMark Cave-Ayland     if (state != oldstate) {
87187a34e2aSLaurent Vivier         if (s->acr & VIA1ACR_vShiftOut) {
87287a34e2aSLaurent Vivier             /* output mode */
8735f083d42SMark Cave-Ayland             adb_via_send(v1s, state, s->sr);
87487a34e2aSLaurent Vivier         } else {
87587a34e2aSLaurent Vivier             /* input mode */
8765f083d42SMark Cave-Ayland             adb_via_receive(v1s, state, &s->sr);
87787a34e2aSLaurent Vivier         }
87887a34e2aSLaurent Vivier     }
87987a34e2aSLaurent Vivier }
88087a34e2aSLaurent Vivier 
8816dca62a0SLaurent Vivier static uint64_t mos6522_q800_via1_read(void *opaque, hwaddr addr, unsigned size)
8826dca62a0SLaurent Vivier {
8836dca62a0SLaurent Vivier     MOS6522Q800VIA1State *s = MOS6522_Q800_VIA1(opaque);
8846dca62a0SLaurent Vivier     MOS6522State *ms = MOS6522(s);
8856dca62a0SLaurent Vivier 
8866dca62a0SLaurent Vivier     addr = (addr >> 9) & 0xf;
8876dca62a0SLaurent Vivier     return mos6522_read(ms, addr, size);
8886dca62a0SLaurent Vivier }
8896dca62a0SLaurent Vivier 
8906dca62a0SLaurent Vivier static void mos6522_q800_via1_write(void *opaque, hwaddr addr, uint64_t val,
8916dca62a0SLaurent Vivier                                     unsigned size)
8926dca62a0SLaurent Vivier {
8936dca62a0SLaurent Vivier     MOS6522Q800VIA1State *v1s = MOS6522_Q800_VIA1(opaque);
8946dca62a0SLaurent Vivier     MOS6522State *ms = MOS6522(v1s);
8956dca62a0SLaurent Vivier 
8966dca62a0SLaurent Vivier     addr = (addr >> 9) & 0xf;
8976dca62a0SLaurent Vivier     mos6522_write(ms, addr, val, size);
8986dca62a0SLaurent Vivier 
899378a5034SMark Cave-Ayland     switch (addr) {
900378a5034SMark Cave-Ayland     case VIA_REG_B:
901741258b0SMark Cave-Ayland         via1_rtc_update(v1s);
9025f083d42SMark Cave-Ayland         via1_adb_update(v1s);
903378a5034SMark Cave-Ayland 
904378a5034SMark Cave-Ayland         v1s->last_b = ms->b;
905378a5034SMark Cave-Ayland         break;
906378a5034SMark Cave-Ayland     }
9076dca62a0SLaurent Vivier }
9086dca62a0SLaurent Vivier 
9096dca62a0SLaurent Vivier static const MemoryRegionOps mos6522_q800_via1_ops = {
9106dca62a0SLaurent Vivier     .read = mos6522_q800_via1_read,
9116dca62a0SLaurent Vivier     .write = mos6522_q800_via1_write,
9126dca62a0SLaurent Vivier     .endianness = DEVICE_BIG_ENDIAN,
9136dca62a0SLaurent Vivier     .valid = {
9146dca62a0SLaurent Vivier         .min_access_size = 1,
915add4dbfbSMark Cave-Ayland         .max_access_size = 4,
9166dca62a0SLaurent Vivier     },
9176dca62a0SLaurent Vivier };
9186dca62a0SLaurent Vivier 
9196dca62a0SLaurent Vivier static uint64_t mos6522_q800_via2_read(void *opaque, hwaddr addr, unsigned size)
9206dca62a0SLaurent Vivier {
9216dca62a0SLaurent Vivier     MOS6522Q800VIA2State *s = MOS6522_Q800_VIA2(opaque);
9226dca62a0SLaurent Vivier     MOS6522State *ms = MOS6522(s);
9236dca62a0SLaurent Vivier 
9246dca62a0SLaurent Vivier     addr = (addr >> 9) & 0xf;
9256dca62a0SLaurent Vivier     return mos6522_read(ms, addr, size);
9266dca62a0SLaurent Vivier }
9276dca62a0SLaurent Vivier 
9286dca62a0SLaurent Vivier static void mos6522_q800_via2_write(void *opaque, hwaddr addr, uint64_t val,
9296dca62a0SLaurent Vivier                                     unsigned size)
9306dca62a0SLaurent Vivier {
9316dca62a0SLaurent Vivier     MOS6522Q800VIA2State *s = MOS6522_Q800_VIA2(opaque);
9326dca62a0SLaurent Vivier     MOS6522State *ms = MOS6522(s);
9336dca62a0SLaurent Vivier 
9346dca62a0SLaurent Vivier     addr = (addr >> 9) & 0xf;
9356dca62a0SLaurent Vivier     mos6522_write(ms, addr, val, size);
9366dca62a0SLaurent Vivier }
9376dca62a0SLaurent Vivier 
9386dca62a0SLaurent Vivier static const MemoryRegionOps mos6522_q800_via2_ops = {
9396dca62a0SLaurent Vivier     .read = mos6522_q800_via2_read,
9406dca62a0SLaurent Vivier     .write = mos6522_q800_via2_write,
9416dca62a0SLaurent Vivier     .endianness = DEVICE_BIG_ENDIAN,
9426dca62a0SLaurent Vivier     .valid = {
9436dca62a0SLaurent Vivier         .min_access_size = 1,
944add4dbfbSMark Cave-Ayland         .max_access_size = 4,
9456dca62a0SLaurent Vivier     },
9466dca62a0SLaurent Vivier };
9476dca62a0SLaurent Vivier 
9486dca62a0SLaurent Vivier static void mac_via_realize(DeviceState *dev, Error **errp)
9496dca62a0SLaurent Vivier {
9506dca62a0SLaurent Vivier     MacVIAState *m = MAC_VIA(dev);
9518064d7bbSMark Cave-Ayland     MOS6522Q800VIA1State *v1s = &m->mos6522_via1;
9526dca62a0SLaurent Vivier     MOS6522State *ms;
9535f083d42SMark Cave-Ayland     ADBBusState *adb_bus = &v1s->adb_bus;
9546dca62a0SLaurent Vivier     struct tm tm;
955eb064db9SLaurent Vivier     int ret;
9566dca62a0SLaurent Vivier 
9576dca62a0SLaurent Vivier     /* Pass through mos6522 output IRQs */
9586dca62a0SLaurent Vivier     ms = MOS6522(&m->mos6522_via1);
9596dca62a0SLaurent Vivier     object_property_add_alias(OBJECT(dev), "irq[0]", OBJECT(ms),
960d2623129SMarkus Armbruster                               SYSBUS_DEVICE_GPIO_IRQ "[0]");
9616dca62a0SLaurent Vivier     ms = MOS6522(&m->mos6522_via2);
9626dca62a0SLaurent Vivier     object_property_add_alias(OBJECT(dev), "irq[1]", OBJECT(ms),
963d2623129SMarkus Armbruster                               SYSBUS_DEVICE_GPIO_IRQ "[0]");
9646dca62a0SLaurent Vivier 
9650074fce6SMarkus Armbruster     sysbus_realize(SYS_BUS_DEVICE(&m->mos6522_via1), &error_abort);
9660074fce6SMarkus Armbruster     sysbus_realize(SYS_BUS_DEVICE(&m->mos6522_via2), &error_abort);
9675e769ecfSMarkus Armbruster 
9686dca62a0SLaurent Vivier     /* Pass through mos6522 input IRQs */
9696dca62a0SLaurent Vivier     qdev_pass_gpios(DEVICE(&m->mos6522_via1), dev, "via1-irq");
9706dca62a0SLaurent Vivier     qdev_pass_gpios(DEVICE(&m->mos6522_via2), dev, "via2-irq");
9716dca62a0SLaurent Vivier 
9726dca62a0SLaurent Vivier     /* VIA 1 */
9736dca62a0SLaurent Vivier     m->mos6522_via1.one_second_timer = timer_new_ms(QEMU_CLOCK_VIRTUAL,
9746dca62a0SLaurent Vivier                                                      via1_one_second,
9756dca62a0SLaurent Vivier                                                      &m->mos6522_via1);
97630ca7eddSMark Cave-Ayland     via1_one_second_update(&m->mos6522_via1);
9774c8f4ab4SMark Cave-Ayland     m->mos6522_via1.sixty_hz_timer = timer_new_ns(QEMU_CLOCK_VIRTUAL,
9784c8f4ab4SMark Cave-Ayland                                                   via1_sixty_hz,
9796dca62a0SLaurent Vivier                                                   &m->mos6522_via1);
98030ca7eddSMark Cave-Ayland     via1_sixty_hz_update(&m->mos6522_via1);
9816dca62a0SLaurent Vivier 
9826dca62a0SLaurent Vivier     qemu_get_timedate(&tm, 0);
983741258b0SMark Cave-Ayland     v1s->tick_offset = (uint32_t)mktimegm(&tm) + RTC_OFFSET;
98487a34e2aSLaurent Vivier 
9855f083d42SMark Cave-Ayland     adb_register_autopoll_callback(adb_bus, adb_via_poll, v1s);
9865f083d42SMark Cave-Ayland     v1s->adb_data_ready = qdev_get_gpio_in_named(dev, "via1-irq",
98787a34e2aSLaurent Vivier                                                  VIA1_IRQ_ADB_READY_BIT);
988eb064db9SLaurent Vivier 
9898064d7bbSMark Cave-Ayland     if (v1s->blk) {
9908064d7bbSMark Cave-Ayland         int64_t len = blk_getlength(v1s->blk);
991eb064db9SLaurent Vivier         if (len < 0) {
992eb064db9SLaurent Vivier             error_setg_errno(errp, -len,
993eb064db9SLaurent Vivier                              "could not get length of backing image");
994eb064db9SLaurent Vivier             return;
995eb064db9SLaurent Vivier         }
9968064d7bbSMark Cave-Ayland         ret = blk_set_perm(v1s->blk,
997eb064db9SLaurent Vivier                            BLK_PERM_CONSISTENT_READ | BLK_PERM_WRITE,
998eb064db9SLaurent Vivier                            BLK_PERM_ALL, errp);
999eb064db9SLaurent Vivier         if (ret < 0) {
1000eb064db9SLaurent Vivier             return;
1001eb064db9SLaurent Vivier         }
1002eb064db9SLaurent Vivier 
10038064d7bbSMark Cave-Ayland         len = blk_pread(v1s->blk, 0, v1s->PRAM, sizeof(v1s->PRAM));
10048064d7bbSMark Cave-Ayland         if (len != sizeof(v1s->PRAM)) {
1005eb064db9SLaurent Vivier             error_setg(errp, "can't read PRAM contents");
1006eb064db9SLaurent Vivier             return;
1007eb064db9SLaurent Vivier         }
1008eb064db9SLaurent Vivier     }
10096dca62a0SLaurent Vivier }
10106dca62a0SLaurent Vivier 
10116dca62a0SLaurent Vivier static void mac_via_init(Object *obj)
10126dca62a0SLaurent Vivier {
10136dca62a0SLaurent Vivier     SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
10146dca62a0SLaurent Vivier     MacVIAState *m = MAC_VIA(obj);
10156dca62a0SLaurent Vivier 
10166dca62a0SLaurent Vivier     /* MMIO */
10176dca62a0SLaurent Vivier     memory_region_init(&m->mmio, obj, "mac-via", 2 * VIA_SIZE);
10186dca62a0SLaurent Vivier     sysbus_init_mmio(sbd, &m->mmio);
10196dca62a0SLaurent Vivier 
10206dca62a0SLaurent Vivier     memory_region_init_io(&m->via1mem, obj, &mos6522_q800_via1_ops,
10216dca62a0SLaurent Vivier                           &m->mos6522_via1, "via1", VIA_SIZE);
10226dca62a0SLaurent Vivier     memory_region_add_subregion(&m->mmio, 0x0, &m->via1mem);
10236dca62a0SLaurent Vivier 
10246dca62a0SLaurent Vivier     memory_region_init_io(&m->via2mem, obj, &mos6522_q800_via2_ops,
10256dca62a0SLaurent Vivier                           &m->mos6522_via2, "via2", VIA_SIZE);
10266dca62a0SLaurent Vivier     memory_region_add_subregion(&m->mmio, VIA_SIZE, &m->via2mem);
10276dca62a0SLaurent Vivier 
10285f083d42SMark Cave-Ayland     /* Init VIAs 1 and 2 */
10295f083d42SMark Cave-Ayland     object_initialize_child(obj, "via1", &m->mos6522_via1,
10305f083d42SMark Cave-Ayland                             TYPE_MOS6522_Q800_VIA1);
10315f083d42SMark Cave-Ayland 
10325f083d42SMark Cave-Ayland     object_initialize_child(obj, "via2", &m->mos6522_via2,
10335f083d42SMark Cave-Ayland                             TYPE_MOS6522_Q800_VIA2);
10346dca62a0SLaurent Vivier }
10356dca62a0SLaurent Vivier 
10368064d7bbSMark Cave-Ayland static void via1_postload_update_cb(void *opaque, bool running, RunState state)
1037eb064db9SLaurent Vivier {
10388064d7bbSMark Cave-Ayland     MOS6522Q800VIA1State *v1s = MOS6522_Q800_VIA1(opaque);
1039eb064db9SLaurent Vivier 
10408064d7bbSMark Cave-Ayland     qemu_del_vm_change_state_handler(v1s->vmstate);
10418064d7bbSMark Cave-Ayland     v1s->vmstate = NULL;
1042eb064db9SLaurent Vivier 
10438064d7bbSMark Cave-Ayland     pram_update(v1s);
1044eb064db9SLaurent Vivier }
1045eb064db9SLaurent Vivier 
10468064d7bbSMark Cave-Ayland static int via1_post_load(void *opaque, int version_id)
1047eb064db9SLaurent Vivier {
10488064d7bbSMark Cave-Ayland     MOS6522Q800VIA1State *v1s = MOS6522_Q800_VIA1(opaque);
1049eb064db9SLaurent Vivier 
10508064d7bbSMark Cave-Ayland     if (v1s->blk) {
10518064d7bbSMark Cave-Ayland         v1s->vmstate = qemu_add_vm_change_state_handler(
10528064d7bbSMark Cave-Ayland                            via1_postload_update_cb, v1s);
1053eb064db9SLaurent Vivier     }
1054eb064db9SLaurent Vivier 
1055eb064db9SLaurent Vivier     return 0;
1056eb064db9SLaurent Vivier }
1057eb064db9SLaurent Vivier 
10586dca62a0SLaurent Vivier static void mac_via_class_init(ObjectClass *oc, void *data)
10596dca62a0SLaurent Vivier {
10606dca62a0SLaurent Vivier     DeviceClass *dc = DEVICE_CLASS(oc);
10616dca62a0SLaurent Vivier 
10626dca62a0SLaurent Vivier     dc->realize = mac_via_realize;
10636dca62a0SLaurent Vivier }
10646dca62a0SLaurent Vivier 
10656dca62a0SLaurent Vivier static TypeInfo mac_via_info = {
10666dca62a0SLaurent Vivier     .name = TYPE_MAC_VIA,
10676dca62a0SLaurent Vivier     .parent = TYPE_SYS_BUS_DEVICE,
10686dca62a0SLaurent Vivier     .instance_size = sizeof(MacVIAState),
10696dca62a0SLaurent Vivier     .instance_init = mac_via_init,
10706dca62a0SLaurent Vivier     .class_init = mac_via_class_init,
10716dca62a0SLaurent Vivier };
10726dca62a0SLaurent Vivier 
10736dca62a0SLaurent Vivier /* VIA 1 */
10746dca62a0SLaurent Vivier static void mos6522_q800_via1_reset(DeviceState *dev)
10756dca62a0SLaurent Vivier {
1076*14562b37SMark Cave-Ayland     MOS6522Q800VIA1State *v1s = MOS6522_Q800_VIA1(dev);
1077*14562b37SMark Cave-Ayland     MOS6522State *ms = MOS6522(v1s);
10789db70dacSEduardo Habkost     MOS6522DeviceClass *mdc = MOS6522_GET_CLASS(ms);
1079*14562b37SMark Cave-Ayland     ADBBusState *adb_bus = &v1s->adb_bus;
10806dca62a0SLaurent Vivier 
10816dca62a0SLaurent Vivier     mdc->parent_reset(dev);
10826dca62a0SLaurent Vivier 
10836dca62a0SLaurent Vivier     ms->timers[0].frequency = VIA_TIMER_FREQ;
10846dca62a0SLaurent Vivier     ms->timers[1].frequency = VIA_TIMER_FREQ;
10856dca62a0SLaurent Vivier 
10866dca62a0SLaurent Vivier     ms->b = VIA1B_vADB_StateMask | VIA1B_vADBInt | VIA1B_vRTCEnb;
1087*14562b37SMark Cave-Ayland 
1088*14562b37SMark Cave-Ayland     /* ADB/RTC */
1089*14562b37SMark Cave-Ayland     adb_set_autopoll_enabled(adb_bus, true);
1090*14562b37SMark Cave-Ayland     v1s->cmd = REG_EMPTY;
1091*14562b37SMark Cave-Ayland     v1s->alt = REG_EMPTY;
10926dca62a0SLaurent Vivier }
10936dca62a0SLaurent Vivier 
10946dca62a0SLaurent Vivier static void mos6522_q800_via1_init(Object *obj)
10956dca62a0SLaurent Vivier {
10965f083d42SMark Cave-Ayland     MOS6522Q800VIA1State *v1s = MOS6522_Q800_VIA1(obj);
10975f083d42SMark Cave-Ayland 
10985f083d42SMark Cave-Ayland     /* ADB */
10995f083d42SMark Cave-Ayland     qbus_create_inplace((BusState *)&v1s->adb_bus, sizeof(v1s->adb_bus),
11005f083d42SMark Cave-Ayland                         TYPE_ADB_BUS, DEVICE(v1s), "adb.0");
11015f083d42SMark Cave-Ayland 
11026dca62a0SLaurent Vivier     qdev_init_gpio_in_named(DEVICE(obj), via1_irq_request, "via1-irq",
11036dca62a0SLaurent Vivier                             VIA1_IRQ_NB);
11046dca62a0SLaurent Vivier }
11056dca62a0SLaurent Vivier 
110617de3d57SMark Cave-Ayland static const VMStateDescription vmstate_q800_via1 = {
110717de3d57SMark Cave-Ayland     .name = "q800-via1",
110817de3d57SMark Cave-Ayland     .version_id = 0,
110917de3d57SMark Cave-Ayland     .minimum_version_id = 0,
11108064d7bbSMark Cave-Ayland     .post_load = via1_post_load,
111117de3d57SMark Cave-Ayland     .fields = (VMStateField[]) {
111217de3d57SMark Cave-Ayland         VMSTATE_STRUCT(parent_obj, MOS6522Q800VIA1State, 0, vmstate_mos6522,
111317de3d57SMark Cave-Ayland                        MOS6522State),
1114ae6f236fSMark Cave-Ayland         VMSTATE_UINT8(last_b, MOS6522Q800VIA1State),
11158064d7bbSMark Cave-Ayland         /* RTC */
11168064d7bbSMark Cave-Ayland         VMSTATE_BUFFER(PRAM, MOS6522Q800VIA1State),
1117741258b0SMark Cave-Ayland         VMSTATE_UINT32(tick_offset, MOS6522Q800VIA1State),
1118741258b0SMark Cave-Ayland         VMSTATE_UINT8(data_out, MOS6522Q800VIA1State),
1119741258b0SMark Cave-Ayland         VMSTATE_INT32(data_out_cnt, MOS6522Q800VIA1State),
1120741258b0SMark Cave-Ayland         VMSTATE_UINT8(data_in, MOS6522Q800VIA1State),
1121741258b0SMark Cave-Ayland         VMSTATE_UINT8(data_in_cnt, MOS6522Q800VIA1State),
1122741258b0SMark Cave-Ayland         VMSTATE_UINT8(cmd, MOS6522Q800VIA1State),
1123741258b0SMark Cave-Ayland         VMSTATE_INT32(wprotect, MOS6522Q800VIA1State),
1124741258b0SMark Cave-Ayland         VMSTATE_INT32(alt, MOS6522Q800VIA1State),
11255f083d42SMark Cave-Ayland         /* ADB */
11265f083d42SMark Cave-Ayland         VMSTATE_INT32(adb_data_in_size, MOS6522Q800VIA1State),
11275f083d42SMark Cave-Ayland         VMSTATE_INT32(adb_data_in_index, MOS6522Q800VIA1State),
11285f083d42SMark Cave-Ayland         VMSTATE_INT32(adb_data_out_index, MOS6522Q800VIA1State),
11295f083d42SMark Cave-Ayland         VMSTATE_BUFFER(adb_data_in, MOS6522Q800VIA1State),
11305f083d42SMark Cave-Ayland         VMSTATE_BUFFER(adb_data_out, MOS6522Q800VIA1State),
11315f083d42SMark Cave-Ayland         VMSTATE_UINT8(adb_autopoll_cmd, MOS6522Q800VIA1State),
113284e944b2SMark Cave-Ayland         /* Timers */
113384e944b2SMark Cave-Ayland         VMSTATE_TIMER_PTR(one_second_timer, MOS6522Q800VIA1State),
113484e944b2SMark Cave-Ayland         VMSTATE_INT64(next_second, MOS6522Q800VIA1State),
113584e944b2SMark Cave-Ayland         VMSTATE_TIMER_PTR(sixty_hz_timer, MOS6522Q800VIA1State),
113684e944b2SMark Cave-Ayland         VMSTATE_INT64(next_sixty_hz, MOS6522Q800VIA1State),
113717de3d57SMark Cave-Ayland         VMSTATE_END_OF_LIST()
113817de3d57SMark Cave-Ayland     }
113917de3d57SMark Cave-Ayland };
114017de3d57SMark Cave-Ayland 
11418064d7bbSMark Cave-Ayland static Property mos6522_q800_via1_properties[] = {
11428064d7bbSMark Cave-Ayland     DEFINE_PROP_DRIVE("drive", MOS6522Q800VIA1State, blk),
11438064d7bbSMark Cave-Ayland     DEFINE_PROP_END_OF_LIST(),
11448064d7bbSMark Cave-Ayland };
11458064d7bbSMark Cave-Ayland 
11466dca62a0SLaurent Vivier static void mos6522_q800_via1_class_init(ObjectClass *oc, void *data)
11476dca62a0SLaurent Vivier {
11486dca62a0SLaurent Vivier     DeviceClass *dc = DEVICE_CLASS(oc);
11496dca62a0SLaurent Vivier 
11506dca62a0SLaurent Vivier     dc->reset = mos6522_q800_via1_reset;
115117de3d57SMark Cave-Ayland     dc->vmsd = &vmstate_q800_via1;
11528064d7bbSMark Cave-Ayland     device_class_set_props(dc, mos6522_q800_via1_properties);
11536dca62a0SLaurent Vivier }
11546dca62a0SLaurent Vivier 
11556dca62a0SLaurent Vivier static const TypeInfo mos6522_q800_via1_type_info = {
11566dca62a0SLaurent Vivier     .name = TYPE_MOS6522_Q800_VIA1,
11576dca62a0SLaurent Vivier     .parent = TYPE_MOS6522,
11586dca62a0SLaurent Vivier     .instance_size = sizeof(MOS6522Q800VIA1State),
11596dca62a0SLaurent Vivier     .instance_init = mos6522_q800_via1_init,
11606dca62a0SLaurent Vivier     .class_init = mos6522_q800_via1_class_init,
11616dca62a0SLaurent Vivier };
11626dca62a0SLaurent Vivier 
11636dca62a0SLaurent Vivier /* VIA 2 */
11646dca62a0SLaurent Vivier static void mos6522_q800_via2_portB_write(MOS6522State *s)
11656dca62a0SLaurent Vivier {
11666dca62a0SLaurent Vivier     if (s->dirb & VIA2B_vPower && (s->b & VIA2B_vPower) == 0) {
11676dca62a0SLaurent Vivier         /* shutdown */
11686dca62a0SLaurent Vivier         qemu_system_shutdown_request(SHUTDOWN_CAUSE_GUEST_SHUTDOWN);
11696dca62a0SLaurent Vivier     }
11706dca62a0SLaurent Vivier }
11716dca62a0SLaurent Vivier 
11726dca62a0SLaurent Vivier static void mos6522_q800_via2_reset(DeviceState *dev)
11736dca62a0SLaurent Vivier {
11746dca62a0SLaurent Vivier     MOS6522State *ms = MOS6522(dev);
11759db70dacSEduardo Habkost     MOS6522DeviceClass *mdc = MOS6522_GET_CLASS(ms);
11766dca62a0SLaurent Vivier 
11776dca62a0SLaurent Vivier     mdc->parent_reset(dev);
11786dca62a0SLaurent Vivier 
11796dca62a0SLaurent Vivier     ms->timers[0].frequency = VIA_TIMER_FREQ;
11806dca62a0SLaurent Vivier     ms->timers[1].frequency = VIA_TIMER_FREQ;
11816dca62a0SLaurent Vivier 
11826dca62a0SLaurent Vivier     ms->dirb = 0;
11836dca62a0SLaurent Vivier     ms->b = 0;
11846dca62a0SLaurent Vivier }
11856dca62a0SLaurent Vivier 
11866dca62a0SLaurent Vivier static void mos6522_q800_via2_init(Object *obj)
11876dca62a0SLaurent Vivier {
11886dca62a0SLaurent Vivier     qdev_init_gpio_in_named(DEVICE(obj), via2_irq_request, "via2-irq",
11896dca62a0SLaurent Vivier                             VIA2_IRQ_NB);
11906dca62a0SLaurent Vivier }
11916dca62a0SLaurent Vivier 
119217de3d57SMark Cave-Ayland static const VMStateDescription vmstate_q800_via2 = {
119317de3d57SMark Cave-Ayland     .name = "q800-via2",
119417de3d57SMark Cave-Ayland     .version_id = 0,
119517de3d57SMark Cave-Ayland     .minimum_version_id = 0,
119617de3d57SMark Cave-Ayland     .fields = (VMStateField[]) {
119717de3d57SMark Cave-Ayland         VMSTATE_STRUCT(parent_obj, MOS6522Q800VIA2State, 0, vmstate_mos6522,
119817de3d57SMark Cave-Ayland                        MOS6522State),
119917de3d57SMark Cave-Ayland         VMSTATE_END_OF_LIST()
120017de3d57SMark Cave-Ayland     }
120117de3d57SMark Cave-Ayland };
120217de3d57SMark Cave-Ayland 
12036dca62a0SLaurent Vivier static void mos6522_q800_via2_class_init(ObjectClass *oc, void *data)
12046dca62a0SLaurent Vivier {
12056dca62a0SLaurent Vivier     DeviceClass *dc = DEVICE_CLASS(oc);
12069db70dacSEduardo Habkost     MOS6522DeviceClass *mdc = MOS6522_CLASS(oc);
12076dca62a0SLaurent Vivier 
12086dca62a0SLaurent Vivier     dc->reset = mos6522_q800_via2_reset;
120917de3d57SMark Cave-Ayland     dc->vmsd = &vmstate_q800_via2;
12106dca62a0SLaurent Vivier     mdc->portB_write = mos6522_q800_via2_portB_write;
12116dca62a0SLaurent Vivier }
12126dca62a0SLaurent Vivier 
12136dca62a0SLaurent Vivier static const TypeInfo mos6522_q800_via2_type_info = {
12146dca62a0SLaurent Vivier     .name = TYPE_MOS6522_Q800_VIA2,
12156dca62a0SLaurent Vivier     .parent = TYPE_MOS6522,
12166dca62a0SLaurent Vivier     .instance_size = sizeof(MOS6522Q800VIA2State),
12176dca62a0SLaurent Vivier     .instance_init = mos6522_q800_via2_init,
12186dca62a0SLaurent Vivier     .class_init = mos6522_q800_via2_class_init,
12196dca62a0SLaurent Vivier };
12206dca62a0SLaurent Vivier 
12216dca62a0SLaurent Vivier static void mac_via_register_types(void)
12226dca62a0SLaurent Vivier {
12236dca62a0SLaurent Vivier     type_register_static(&mos6522_q800_via1_type_info);
12246dca62a0SLaurent Vivier     type_register_static(&mos6522_q800_via2_type_info);
12256dca62a0SLaurent Vivier     type_register_static(&mac_via_info);
12266dca62a0SLaurent Vivier }
12276dca62a0SLaurent Vivier 
12286dca62a0SLaurent Vivier type_init(mac_via_register_types);
1229