usb: move complete callback to port ops
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parent
5dc1672b27
commit
13a9a0d3e2
14
hw/usb-hub.c
14
hw/usb-hub.c
@ -256,6 +256,19 @@ static void usb_hub_wakeup(USBDevice *dev)
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}
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}
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static void usb_hub_complete(USBDevice *dev, USBPacket *packet)
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{
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USBHubState *s = dev->port->opaque;
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/*
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* Just pass it along upstream for now.
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*
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* If we ever inplement usb 2.0 split transactions this will
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* become a little more complicated ...
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*/
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usb_packet_complete(&s->dev, packet);
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}
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static void usb_hub_handle_attach(USBDevice *dev)
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{
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USBHubState *s = DO_UPCAST(USBHubState, dev, dev);
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@ -524,6 +537,7 @@ static USBPortOps usb_hub_port_ops = {
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.attach = usb_hub_attach,
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.detach = usb_hub_detach,
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.wakeup = usb_hub_wakeup,
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.complete = usb_hub_complete,
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};
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static int usb_hub_initfn(USBDevice *dev)
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@ -241,7 +241,7 @@ static void usb_msd_command_complete(SCSIBus *bus, int reason, uint32_t tag,
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s->mode = USB_MSDM_CSW;
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}
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s->packet = NULL;
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usb_packet_complete(p);
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usb_packet_complete(&s->dev, p);
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} else if (s->data_len == 0) {
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s->mode = USB_MSDM_CSW;
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}
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@ -257,7 +257,7 @@ static void usb_msd_command_complete(SCSIBus *bus, int reason, uint32_t tag,
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usb_packet_complete returns. */
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DPRINTF("Packet complete %p\n", p);
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s->packet = NULL;
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usb_packet_complete(p);
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usb_packet_complete(&s->dev, p);
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}
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}
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}
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@ -261,10 +261,12 @@
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static void musb_attach(USBPort *port);
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static void musb_detach(USBPort *port);
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static void musb_schedule_cb(USBDevice *dev, USBPacket *p);
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static USBPortOps musb_port_ops = {
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.attach = musb_attach,
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.detach = musb_detach,
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.complete = musb_schedule_cb,
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};
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typedef struct MUSBPacket MUSBPacket;
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@ -511,9 +513,11 @@ static inline void musb_cb_tick1(void *opaque)
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#define musb_cb_tick (dir ? musb_cb_tick1 : musb_cb_tick0)
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static inline void musb_schedule_cb(USBPacket *packey, void *opaque, int dir)
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static inline void musb_schedule_cb(USBDevice *dev, USBPacket *packey)
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{
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MUSBEndPoint *ep = (MUSBEndPoint *) opaque;
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MUSBPacket *p = container_of(packey, MUSBPacket, p);
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MUSBEndPoint *ep = p->ep;
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int dir = p->dir;
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int timeout = 0;
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if (ep->status[dir] == USB_RET_NAK)
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@ -521,25 +525,15 @@ static inline void musb_schedule_cb(USBPacket *packey, void *opaque, int dir)
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else if (ep->interrupt[dir])
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timeout = 8;
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else
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return musb_cb_tick(opaque);
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return musb_cb_tick(ep);
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if (!ep->intv_timer[dir])
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ep->intv_timer[dir] = qemu_new_timer_ns(vm_clock, musb_cb_tick, opaque);
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ep->intv_timer[dir] = qemu_new_timer_ns(vm_clock, musb_cb_tick, ep);
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qemu_mod_timer(ep->intv_timer[dir], qemu_get_clock_ns(vm_clock) +
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muldiv64(timeout, get_ticks_per_sec(), 8000));
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}
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static void musb_schedule0_cb(USBPacket *packey, void *opaque)
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{
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return musb_schedule_cb(packey, opaque, 0);
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}
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static void musb_schedule1_cb(USBPacket *packey, void *opaque)
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{
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return musb_schedule_cb(packey, opaque, 1);
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}
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static int musb_timeout(int ttype, int speed, int val)
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{
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#if 1
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@ -596,7 +590,6 @@ static inline void musb_packet(MUSBState *s, MUSBEndPoint *ep,
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ep->type[idx] >> 6, ep->interval[idx]);
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ep->interrupt[dir] = ttype == USB_ENDPOINT_XFER_INT;
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ep->delayed_cb[dir] = cb;
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cb = dir ? musb_schedule1_cb : musb_schedule0_cb;
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ep->packey[dir].p.pid = pid;
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/* A wild guess on the FADDR semantics... */
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@ -604,8 +597,6 @@ static inline void musb_packet(MUSBState *s, MUSBEndPoint *ep,
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ep->packey[dir].p.devep = ep->type[idx] & 0xf;
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ep->packey[dir].p.data = (void *) ep->buf[idx];
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ep->packey[dir].p.len = len;
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ep->packey[dir].p.complete_cb = cb;
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ep->packey[dir].p.complete_opaque = ep;
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ep->packey[dir].ep = ep;
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ep->packey[dir].dir = dir;
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@ -620,7 +611,7 @@ static inline void musb_packet(MUSBState *s, MUSBEndPoint *ep,
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}
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ep->status[dir] = ret;
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usb_packet_complete(&ep->packey[dir].p);
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usb_packet_complete(s->port.dev, &ep->packey[dir].p);
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}
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static void musb_tx_packet_complete(USBPacket *packey, void *opaque)
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@ -575,7 +575,7 @@ static void ohci_copy_iso_td(OHCIState *ohci,
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static void ohci_process_lists(OHCIState *ohci, int completion);
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static void ohci_async_complete_packet(USBPacket *packet, void *opaque)
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static void ohci_async_complete_packet(USBDevice *dev, USBPacket *packet)
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{
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OHCIState *ohci = container_of(packet, OHCIState, usb_packet);
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#ifdef DEBUG_PACKET
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@ -748,8 +748,6 @@ static int ohci_service_iso_td(OHCIState *ohci, struct ohci_ed *ed,
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ohci->usb_packet.devep = OHCI_BM(ed->flags, ED_EN);
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ohci->usb_packet.data = ohci->usb_buf;
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ohci->usb_packet.len = len;
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ohci->usb_packet.complete_cb = ohci_async_complete_packet;
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ohci->usb_packet.complete_opaque = ohci;
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ret = dev->info->handle_packet(dev, &ohci->usb_packet);
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if (ret != USB_RET_NODEV)
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break;
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@ -946,8 +944,6 @@ static int ohci_service_td(OHCIState *ohci, struct ohci_ed *ed)
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ohci->usb_packet.devep = OHCI_BM(ed->flags, ED_EN);
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ohci->usb_packet.data = ohci->usb_buf;
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ohci->usb_packet.len = len;
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ohci->usb_packet.complete_cb = ohci_async_complete_packet;
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ohci->usb_packet.complete_opaque = ohci;
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ret = dev->info->handle_packet(dev, &ohci->usb_packet);
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if (ret != USB_RET_NODEV)
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break;
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@ -1665,6 +1661,7 @@ static CPUWriteMemoryFunc * const ohci_writefn[3]={
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static USBPortOps ohci_port_ops = {
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.attach = ohci_attach,
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.detach = ohci_detach,
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.complete = ohci_async_complete_packet,
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};
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static void usb_ohci_init(OHCIState *ohci, DeviceState *dev,
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@ -642,7 +642,7 @@ static int uhci_broadcast_packet(UHCIState *s, USBPacket *p)
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return ret;
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}
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static void uhci_async_complete(USBPacket * packet, void *opaque);
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static void uhci_async_complete(USBDevice *dev, USBPacket *packet);
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static void uhci_process_frame(UHCIState *s);
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/* return -1 if fatal error (frame must be stopped)
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@ -795,8 +795,6 @@ static int uhci_handle_td(UHCIState *s, uint32_t addr, UHCI_TD *td, uint32_t *in
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async->packet.devep = (td->token >> 15) & 0xf;
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async->packet.data = async->buffer;
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async->packet.len = max_len;
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async->packet.complete_cb = uhci_async_complete;
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async->packet.complete_opaque = s;
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switch(pid) {
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case USB_TOKEN_OUT:
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@ -832,7 +830,7 @@ done:
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return len;
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}
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static void uhci_async_complete(USBPacket *packet, void *opaque)
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static void uhci_async_complete(USBDevice *dev, USBPacket *packet)
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{
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UHCIAsync *async = container_of(packet, UHCIAsync, packet);
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UHCIState *s = async->uhci;
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@ -1083,6 +1081,7 @@ static USBPortOps uhci_port_ops = {
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.attach = uhci_attach,
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.detach = uhci_detach,
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.wakeup = uhci_wakeup,
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.complete = uhci_async_complete,
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};
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static int usb_uhci_common_initfn(UHCIState *s)
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7
hw/usb.h
7
hw/usb.h
@ -235,6 +235,7 @@ typedef struct USBPortOps {
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void (*attach)(USBPort *port);
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void (*detach)(USBPort *port);
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void (*wakeup)(USBDevice *dev);
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void (*complete)(USBDevice *dev, USBPacket *p);
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} USBPortOps;
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/* USB port on which a device can be connected */
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@ -259,8 +260,6 @@ struct USBPacket {
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uint8_t *data;
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int len;
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/* Internal use by the USB layer. */
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USBCallback *complete_cb;
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void *complete_opaque;
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USBCallback *cancel_cb;
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void *cancel_opaque;
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};
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@ -278,9 +277,9 @@ static inline void usb_defer_packet(USBPacket *p, USBCallback *cancel,
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/* Notify the controller that an async packet is complete. This should only
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be called for packets previously deferred with usb_defer_packet, and
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should never be called from within handle_packet. */
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static inline void usb_packet_complete(USBPacket *p)
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static inline void usb_packet_complete(USBDevice *dev, USBPacket *p)
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{
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p->complete_cb(p, p->complete_opaque);
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dev->port->ops->complete(dev, p);
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}
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/* Cancel an active packet. The packed must have been deferred with
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@ -348,7 +348,7 @@ static void async_complete(void *opaque)
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break;
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}
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usb_packet_complete(p);
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usb_packet_complete(&s->dev, p);
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}
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async_free(aurb);
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