xref: /qemu/hw/usb/hcd-xhci.c (revision c1f6b493)
1f1ae32a1SGerd Hoffmann /*
2f1ae32a1SGerd Hoffmann  * USB xHCI controller emulation
3f1ae32a1SGerd Hoffmann  *
4f1ae32a1SGerd Hoffmann  * Copyright (c) 2011 Securiforest
5f1ae32a1SGerd Hoffmann  * Date: 2011-05-11 ;  Author: Hector Martin <hector@marcansoft.com>
6f1ae32a1SGerd Hoffmann  * Based on usb-ohci.c, emulates Renesas NEC USB 3.0
7f1ae32a1SGerd Hoffmann  *
8f1ae32a1SGerd Hoffmann  * This library is free software; you can redistribute it and/or
9f1ae32a1SGerd Hoffmann  * modify it under the terms of the GNU Lesser General Public
10f1ae32a1SGerd Hoffmann  * License as published by the Free Software Foundation; either
11f1ae32a1SGerd Hoffmann  * version 2 of the License, or (at your option) any later version.
12f1ae32a1SGerd Hoffmann  *
13f1ae32a1SGerd Hoffmann  * This library is distributed in the hope that it will be useful,
14f1ae32a1SGerd Hoffmann  * but WITHOUT ANY WARRANTY; without even the implied warranty of
15f1ae32a1SGerd Hoffmann  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
16f1ae32a1SGerd Hoffmann  * Lesser General Public License for more details.
17f1ae32a1SGerd Hoffmann  *
18f1ae32a1SGerd Hoffmann  * You should have received a copy of the GNU Lesser General Public
19f1ae32a1SGerd Hoffmann  * License along with this library; if not, see <http://www.gnu.org/licenses/>.
20f1ae32a1SGerd Hoffmann  */
21f1ae32a1SGerd Hoffmann #include "hw/hw.h"
22f1ae32a1SGerd Hoffmann #include "qemu-timer.h"
23f1ae32a1SGerd Hoffmann #include "hw/usb.h"
24f1ae32a1SGerd Hoffmann #include "hw/pci.h"
25f1ae32a1SGerd Hoffmann #include "hw/msi.h"
262d754a10SGerd Hoffmann #include "trace.h"
27f1ae32a1SGerd Hoffmann 
28f1ae32a1SGerd Hoffmann //#define DEBUG_XHCI
29f1ae32a1SGerd Hoffmann //#define DEBUG_DATA
30f1ae32a1SGerd Hoffmann 
31f1ae32a1SGerd Hoffmann #ifdef DEBUG_XHCI
32f1ae32a1SGerd Hoffmann #define DPRINTF(...) fprintf(stderr, __VA_ARGS__)
33f1ae32a1SGerd Hoffmann #else
34f1ae32a1SGerd Hoffmann #define DPRINTF(...) do {} while (0)
35f1ae32a1SGerd Hoffmann #endif
36f1ae32a1SGerd Hoffmann #define FIXME() do { fprintf(stderr, "FIXME %s:%d\n", \
37f1ae32a1SGerd Hoffmann                              __func__, __LINE__); abort(); } while (0)
38f1ae32a1SGerd Hoffmann 
39f1ae32a1SGerd Hoffmann #define MAXSLOTS 8
40f1ae32a1SGerd Hoffmann #define MAXINTRS 1
41f1ae32a1SGerd Hoffmann 
42f1ae32a1SGerd Hoffmann #define USB2_PORTS 4
43f1ae32a1SGerd Hoffmann #define USB3_PORTS 4
44f1ae32a1SGerd Hoffmann 
45f1ae32a1SGerd Hoffmann #define MAXPORTS (USB2_PORTS+USB3_PORTS)
46f1ae32a1SGerd Hoffmann 
47f1ae32a1SGerd Hoffmann #define TD_QUEUE 24
48f1ae32a1SGerd Hoffmann #define BG_XFERS 8
49f1ae32a1SGerd Hoffmann #define BG_PKTS 8
50f1ae32a1SGerd Hoffmann 
51f1ae32a1SGerd Hoffmann /* Very pessimistic, let's hope it's enough for all cases */
52f1ae32a1SGerd Hoffmann #define EV_QUEUE (((3*TD_QUEUE)+16)*MAXSLOTS)
53f1ae32a1SGerd Hoffmann /* Do not deliver ER Full events. NEC's driver does some things not bound
54f1ae32a1SGerd Hoffmann  * to the specs when it gets them */
55f1ae32a1SGerd Hoffmann #define ER_FULL_HACK
56f1ae32a1SGerd Hoffmann 
57f1ae32a1SGerd Hoffmann #define LEN_CAP         0x40
58f1ae32a1SGerd Hoffmann #define OFF_OPER        LEN_CAP
59f1ae32a1SGerd Hoffmann #define LEN_OPER        (0x400 + 0x10 * MAXPORTS)
60f1ae32a1SGerd Hoffmann #define OFF_RUNTIME     ((OFF_OPER + LEN_OPER + 0x20) & ~0x1f)
61f1ae32a1SGerd Hoffmann #define LEN_RUNTIME     (0x20 + MAXINTRS * 0x20)
62f1ae32a1SGerd Hoffmann #define OFF_DOORBELL    (OFF_RUNTIME + LEN_RUNTIME)
63f1ae32a1SGerd Hoffmann #define LEN_DOORBELL    ((MAXSLOTS + 1) * 0x20)
64f1ae32a1SGerd Hoffmann 
65f1ae32a1SGerd Hoffmann /* must be power of 2 */
66f1ae32a1SGerd Hoffmann #define LEN_REGS        0x2000
67f1ae32a1SGerd Hoffmann 
68f1ae32a1SGerd Hoffmann #if (OFF_DOORBELL + LEN_DOORBELL) > LEN_REGS
69f1ae32a1SGerd Hoffmann # error Increase LEN_REGS
70f1ae32a1SGerd Hoffmann #endif
71f1ae32a1SGerd Hoffmann 
72f1ae32a1SGerd Hoffmann #if MAXINTRS > 1
73f1ae32a1SGerd Hoffmann # error TODO: only one interrupter supported
74f1ae32a1SGerd Hoffmann #endif
75f1ae32a1SGerd Hoffmann 
76f1ae32a1SGerd Hoffmann /* bit definitions */
77f1ae32a1SGerd Hoffmann #define USBCMD_RS       (1<<0)
78f1ae32a1SGerd Hoffmann #define USBCMD_HCRST    (1<<1)
79f1ae32a1SGerd Hoffmann #define USBCMD_INTE     (1<<2)
80f1ae32a1SGerd Hoffmann #define USBCMD_HSEE     (1<<3)
81f1ae32a1SGerd Hoffmann #define USBCMD_LHCRST   (1<<7)
82f1ae32a1SGerd Hoffmann #define USBCMD_CSS      (1<<8)
83f1ae32a1SGerd Hoffmann #define USBCMD_CRS      (1<<9)
84f1ae32a1SGerd Hoffmann #define USBCMD_EWE      (1<<10)
85f1ae32a1SGerd Hoffmann #define USBCMD_EU3S     (1<<11)
86f1ae32a1SGerd Hoffmann 
87f1ae32a1SGerd Hoffmann #define USBSTS_HCH      (1<<0)
88f1ae32a1SGerd Hoffmann #define USBSTS_HSE      (1<<2)
89f1ae32a1SGerd Hoffmann #define USBSTS_EINT     (1<<3)
90f1ae32a1SGerd Hoffmann #define USBSTS_PCD      (1<<4)
91f1ae32a1SGerd Hoffmann #define USBSTS_SSS      (1<<8)
92f1ae32a1SGerd Hoffmann #define USBSTS_RSS      (1<<9)
93f1ae32a1SGerd Hoffmann #define USBSTS_SRE      (1<<10)
94f1ae32a1SGerd Hoffmann #define USBSTS_CNR      (1<<11)
95f1ae32a1SGerd Hoffmann #define USBSTS_HCE      (1<<12)
96f1ae32a1SGerd Hoffmann 
97f1ae32a1SGerd Hoffmann 
98f1ae32a1SGerd Hoffmann #define PORTSC_CCS          (1<<0)
99f1ae32a1SGerd Hoffmann #define PORTSC_PED          (1<<1)
100f1ae32a1SGerd Hoffmann #define PORTSC_OCA          (1<<3)
101f1ae32a1SGerd Hoffmann #define PORTSC_PR           (1<<4)
102f1ae32a1SGerd Hoffmann #define PORTSC_PLS_SHIFT        5
103f1ae32a1SGerd Hoffmann #define PORTSC_PLS_MASK     0xf
104f1ae32a1SGerd Hoffmann #define PORTSC_PP           (1<<9)
105f1ae32a1SGerd Hoffmann #define PORTSC_SPEED_SHIFT      10
106f1ae32a1SGerd Hoffmann #define PORTSC_SPEED_MASK   0xf
107f1ae32a1SGerd Hoffmann #define PORTSC_SPEED_FULL   (1<<10)
108f1ae32a1SGerd Hoffmann #define PORTSC_SPEED_LOW    (2<<10)
109f1ae32a1SGerd Hoffmann #define PORTSC_SPEED_HIGH   (3<<10)
110f1ae32a1SGerd Hoffmann #define PORTSC_SPEED_SUPER  (4<<10)
111f1ae32a1SGerd Hoffmann #define PORTSC_PIC_SHIFT        14
112f1ae32a1SGerd Hoffmann #define PORTSC_PIC_MASK     0x3
113f1ae32a1SGerd Hoffmann #define PORTSC_LWS          (1<<16)
114f1ae32a1SGerd Hoffmann #define PORTSC_CSC          (1<<17)
115f1ae32a1SGerd Hoffmann #define PORTSC_PEC          (1<<18)
116f1ae32a1SGerd Hoffmann #define PORTSC_WRC          (1<<19)
117f1ae32a1SGerd Hoffmann #define PORTSC_OCC          (1<<20)
118f1ae32a1SGerd Hoffmann #define PORTSC_PRC          (1<<21)
119f1ae32a1SGerd Hoffmann #define PORTSC_PLC          (1<<22)
120f1ae32a1SGerd Hoffmann #define PORTSC_CEC          (1<<23)
121f1ae32a1SGerd Hoffmann #define PORTSC_CAS          (1<<24)
122f1ae32a1SGerd Hoffmann #define PORTSC_WCE          (1<<25)
123f1ae32a1SGerd Hoffmann #define PORTSC_WDE          (1<<26)
124f1ae32a1SGerd Hoffmann #define PORTSC_WOE          (1<<27)
125f1ae32a1SGerd Hoffmann #define PORTSC_DR           (1<<30)
126f1ae32a1SGerd Hoffmann #define PORTSC_WPR          (1<<31)
127f1ae32a1SGerd Hoffmann 
128f1ae32a1SGerd Hoffmann #define CRCR_RCS        (1<<0)
129f1ae32a1SGerd Hoffmann #define CRCR_CS         (1<<1)
130f1ae32a1SGerd Hoffmann #define CRCR_CA         (1<<2)
131f1ae32a1SGerd Hoffmann #define CRCR_CRR        (1<<3)
132f1ae32a1SGerd Hoffmann 
133f1ae32a1SGerd Hoffmann #define IMAN_IP         (1<<0)
134f1ae32a1SGerd Hoffmann #define IMAN_IE         (1<<1)
135f1ae32a1SGerd Hoffmann 
136f1ae32a1SGerd Hoffmann #define ERDP_EHB        (1<<3)
137f1ae32a1SGerd Hoffmann 
138f1ae32a1SGerd Hoffmann #define TRB_SIZE 16
139f1ae32a1SGerd Hoffmann typedef struct XHCITRB {
140f1ae32a1SGerd Hoffmann     uint64_t parameter;
141f1ae32a1SGerd Hoffmann     uint32_t status;
142f1ae32a1SGerd Hoffmann     uint32_t control;
14359a70ccdSDavid Gibson     dma_addr_t addr;
144f1ae32a1SGerd Hoffmann     bool ccs;
145f1ae32a1SGerd Hoffmann } XHCITRB;
146f1ae32a1SGerd Hoffmann 
147f1ae32a1SGerd Hoffmann 
148f1ae32a1SGerd Hoffmann typedef enum TRBType {
149f1ae32a1SGerd Hoffmann     TRB_RESERVED = 0,
150f1ae32a1SGerd Hoffmann     TR_NORMAL,
151f1ae32a1SGerd Hoffmann     TR_SETUP,
152f1ae32a1SGerd Hoffmann     TR_DATA,
153f1ae32a1SGerd Hoffmann     TR_STATUS,
154f1ae32a1SGerd Hoffmann     TR_ISOCH,
155f1ae32a1SGerd Hoffmann     TR_LINK,
156f1ae32a1SGerd Hoffmann     TR_EVDATA,
157f1ae32a1SGerd Hoffmann     TR_NOOP,
158f1ae32a1SGerd Hoffmann     CR_ENABLE_SLOT,
159f1ae32a1SGerd Hoffmann     CR_DISABLE_SLOT,
160f1ae32a1SGerd Hoffmann     CR_ADDRESS_DEVICE,
161f1ae32a1SGerd Hoffmann     CR_CONFIGURE_ENDPOINT,
162f1ae32a1SGerd Hoffmann     CR_EVALUATE_CONTEXT,
163f1ae32a1SGerd Hoffmann     CR_RESET_ENDPOINT,
164f1ae32a1SGerd Hoffmann     CR_STOP_ENDPOINT,
165f1ae32a1SGerd Hoffmann     CR_SET_TR_DEQUEUE,
166f1ae32a1SGerd Hoffmann     CR_RESET_DEVICE,
167f1ae32a1SGerd Hoffmann     CR_FORCE_EVENT,
168f1ae32a1SGerd Hoffmann     CR_NEGOTIATE_BW,
169f1ae32a1SGerd Hoffmann     CR_SET_LATENCY_TOLERANCE,
170f1ae32a1SGerd Hoffmann     CR_GET_PORT_BANDWIDTH,
171f1ae32a1SGerd Hoffmann     CR_FORCE_HEADER,
172f1ae32a1SGerd Hoffmann     CR_NOOP,
173f1ae32a1SGerd Hoffmann     ER_TRANSFER = 32,
174f1ae32a1SGerd Hoffmann     ER_COMMAND_COMPLETE,
175f1ae32a1SGerd Hoffmann     ER_PORT_STATUS_CHANGE,
176f1ae32a1SGerd Hoffmann     ER_BANDWIDTH_REQUEST,
177f1ae32a1SGerd Hoffmann     ER_DOORBELL,
178f1ae32a1SGerd Hoffmann     ER_HOST_CONTROLLER,
179f1ae32a1SGerd Hoffmann     ER_DEVICE_NOTIFICATION,
180f1ae32a1SGerd Hoffmann     ER_MFINDEX_WRAP,
181f1ae32a1SGerd Hoffmann     /* vendor specific bits */
182f1ae32a1SGerd Hoffmann     CR_VENDOR_VIA_CHALLENGE_RESPONSE = 48,
183f1ae32a1SGerd Hoffmann     CR_VENDOR_NEC_FIRMWARE_REVISION  = 49,
184f1ae32a1SGerd Hoffmann     CR_VENDOR_NEC_CHALLENGE_RESPONSE = 50,
185f1ae32a1SGerd Hoffmann } TRBType;
186f1ae32a1SGerd Hoffmann 
187f1ae32a1SGerd Hoffmann #define CR_LINK TR_LINK
188f1ae32a1SGerd Hoffmann 
189f1ae32a1SGerd Hoffmann typedef enum TRBCCode {
190f1ae32a1SGerd Hoffmann     CC_INVALID = 0,
191f1ae32a1SGerd Hoffmann     CC_SUCCESS,
192f1ae32a1SGerd Hoffmann     CC_DATA_BUFFER_ERROR,
193f1ae32a1SGerd Hoffmann     CC_BABBLE_DETECTED,
194f1ae32a1SGerd Hoffmann     CC_USB_TRANSACTION_ERROR,
195f1ae32a1SGerd Hoffmann     CC_TRB_ERROR,
196f1ae32a1SGerd Hoffmann     CC_STALL_ERROR,
197f1ae32a1SGerd Hoffmann     CC_RESOURCE_ERROR,
198f1ae32a1SGerd Hoffmann     CC_BANDWIDTH_ERROR,
199f1ae32a1SGerd Hoffmann     CC_NO_SLOTS_ERROR,
200f1ae32a1SGerd Hoffmann     CC_INVALID_STREAM_TYPE_ERROR,
201f1ae32a1SGerd Hoffmann     CC_SLOT_NOT_ENABLED_ERROR,
202f1ae32a1SGerd Hoffmann     CC_EP_NOT_ENABLED_ERROR,
203f1ae32a1SGerd Hoffmann     CC_SHORT_PACKET,
204f1ae32a1SGerd Hoffmann     CC_RING_UNDERRUN,
205f1ae32a1SGerd Hoffmann     CC_RING_OVERRUN,
206f1ae32a1SGerd Hoffmann     CC_VF_ER_FULL,
207f1ae32a1SGerd Hoffmann     CC_PARAMETER_ERROR,
208f1ae32a1SGerd Hoffmann     CC_BANDWIDTH_OVERRUN,
209f1ae32a1SGerd Hoffmann     CC_CONTEXT_STATE_ERROR,
210f1ae32a1SGerd Hoffmann     CC_NO_PING_RESPONSE_ERROR,
211f1ae32a1SGerd Hoffmann     CC_EVENT_RING_FULL_ERROR,
212f1ae32a1SGerd Hoffmann     CC_INCOMPATIBLE_DEVICE_ERROR,
213f1ae32a1SGerd Hoffmann     CC_MISSED_SERVICE_ERROR,
214f1ae32a1SGerd Hoffmann     CC_COMMAND_RING_STOPPED,
215f1ae32a1SGerd Hoffmann     CC_COMMAND_ABORTED,
216f1ae32a1SGerd Hoffmann     CC_STOPPED,
217f1ae32a1SGerd Hoffmann     CC_STOPPED_LENGTH_INVALID,
218f1ae32a1SGerd Hoffmann     CC_MAX_EXIT_LATENCY_TOO_LARGE_ERROR = 29,
219f1ae32a1SGerd Hoffmann     CC_ISOCH_BUFFER_OVERRUN = 31,
220f1ae32a1SGerd Hoffmann     CC_EVENT_LOST_ERROR,
221f1ae32a1SGerd Hoffmann     CC_UNDEFINED_ERROR,
222f1ae32a1SGerd Hoffmann     CC_INVALID_STREAM_ID_ERROR,
223f1ae32a1SGerd Hoffmann     CC_SECONDARY_BANDWIDTH_ERROR,
224f1ae32a1SGerd Hoffmann     CC_SPLIT_TRANSACTION_ERROR
225f1ae32a1SGerd Hoffmann } TRBCCode;
226f1ae32a1SGerd Hoffmann 
227f1ae32a1SGerd Hoffmann #define TRB_C               (1<<0)
228f1ae32a1SGerd Hoffmann #define TRB_TYPE_SHIFT          10
229f1ae32a1SGerd Hoffmann #define TRB_TYPE_MASK       0x3f
230f1ae32a1SGerd Hoffmann #define TRB_TYPE(t)         (((t).control >> TRB_TYPE_SHIFT) & TRB_TYPE_MASK)
231f1ae32a1SGerd Hoffmann 
232f1ae32a1SGerd Hoffmann #define TRB_EV_ED           (1<<2)
233f1ae32a1SGerd Hoffmann 
234f1ae32a1SGerd Hoffmann #define TRB_TR_ENT          (1<<1)
235f1ae32a1SGerd Hoffmann #define TRB_TR_ISP          (1<<2)
236f1ae32a1SGerd Hoffmann #define TRB_TR_NS           (1<<3)
237f1ae32a1SGerd Hoffmann #define TRB_TR_CH           (1<<4)
238f1ae32a1SGerd Hoffmann #define TRB_TR_IOC          (1<<5)
239f1ae32a1SGerd Hoffmann #define TRB_TR_IDT          (1<<6)
240f1ae32a1SGerd Hoffmann #define TRB_TR_TBC_SHIFT        7
241f1ae32a1SGerd Hoffmann #define TRB_TR_TBC_MASK     0x3
242f1ae32a1SGerd Hoffmann #define TRB_TR_BEI          (1<<9)
243f1ae32a1SGerd Hoffmann #define TRB_TR_TLBPC_SHIFT      16
244f1ae32a1SGerd Hoffmann #define TRB_TR_TLBPC_MASK   0xf
245f1ae32a1SGerd Hoffmann #define TRB_TR_FRAMEID_SHIFT    20
246f1ae32a1SGerd Hoffmann #define TRB_TR_FRAMEID_MASK 0x7ff
247f1ae32a1SGerd Hoffmann #define TRB_TR_SIA          (1<<31)
248f1ae32a1SGerd Hoffmann 
249f1ae32a1SGerd Hoffmann #define TRB_TR_DIR          (1<<16)
250f1ae32a1SGerd Hoffmann 
251f1ae32a1SGerd Hoffmann #define TRB_CR_SLOTID_SHIFT     24
252f1ae32a1SGerd Hoffmann #define TRB_CR_SLOTID_MASK  0xff
253f1ae32a1SGerd Hoffmann #define TRB_CR_EPID_SHIFT       16
254f1ae32a1SGerd Hoffmann #define TRB_CR_EPID_MASK    0x1f
255f1ae32a1SGerd Hoffmann 
256f1ae32a1SGerd Hoffmann #define TRB_CR_BSR          (1<<9)
257f1ae32a1SGerd Hoffmann #define TRB_CR_DC           (1<<9)
258f1ae32a1SGerd Hoffmann 
259f1ae32a1SGerd Hoffmann #define TRB_LK_TC           (1<<1)
260f1ae32a1SGerd Hoffmann 
261f1ae32a1SGerd Hoffmann #define EP_TYPE_MASK        0x7
262f1ae32a1SGerd Hoffmann #define EP_TYPE_SHIFT           3
263f1ae32a1SGerd Hoffmann 
264f1ae32a1SGerd Hoffmann #define EP_STATE_MASK       0x7
265f1ae32a1SGerd Hoffmann #define EP_DISABLED         (0<<0)
266f1ae32a1SGerd Hoffmann #define EP_RUNNING          (1<<0)
267f1ae32a1SGerd Hoffmann #define EP_HALTED           (2<<0)
268f1ae32a1SGerd Hoffmann #define EP_STOPPED          (3<<0)
269f1ae32a1SGerd Hoffmann #define EP_ERROR            (4<<0)
270f1ae32a1SGerd Hoffmann 
271f1ae32a1SGerd Hoffmann #define SLOT_STATE_MASK     0x1f
272f1ae32a1SGerd Hoffmann #define SLOT_STATE_SHIFT        27
273f1ae32a1SGerd Hoffmann #define SLOT_STATE(s)       (((s)>>SLOT_STATE_SHIFT)&SLOT_STATE_MASK)
274f1ae32a1SGerd Hoffmann #define SLOT_ENABLED        0
275f1ae32a1SGerd Hoffmann #define SLOT_DEFAULT        1
276f1ae32a1SGerd Hoffmann #define SLOT_ADDRESSED      2
277f1ae32a1SGerd Hoffmann #define SLOT_CONFIGURED     3
278f1ae32a1SGerd Hoffmann 
279f1ae32a1SGerd Hoffmann #define SLOT_CONTEXT_ENTRIES_MASK 0x1f
280f1ae32a1SGerd Hoffmann #define SLOT_CONTEXT_ENTRIES_SHIFT 27
281f1ae32a1SGerd Hoffmann 
282f1ae32a1SGerd Hoffmann typedef enum EPType {
283f1ae32a1SGerd Hoffmann     ET_INVALID = 0,
284f1ae32a1SGerd Hoffmann     ET_ISO_OUT,
285f1ae32a1SGerd Hoffmann     ET_BULK_OUT,
286f1ae32a1SGerd Hoffmann     ET_INTR_OUT,
287f1ae32a1SGerd Hoffmann     ET_CONTROL,
288f1ae32a1SGerd Hoffmann     ET_ISO_IN,
289f1ae32a1SGerd Hoffmann     ET_BULK_IN,
290f1ae32a1SGerd Hoffmann     ET_INTR_IN,
291f1ae32a1SGerd Hoffmann } EPType;
292f1ae32a1SGerd Hoffmann 
293f1ae32a1SGerd Hoffmann typedef struct XHCIRing {
29459a70ccdSDavid Gibson     dma_addr_t base;
29559a70ccdSDavid Gibson     dma_addr_t dequeue;
296f1ae32a1SGerd Hoffmann     bool ccs;
297f1ae32a1SGerd Hoffmann } XHCIRing;
298f1ae32a1SGerd Hoffmann 
299f1ae32a1SGerd Hoffmann typedef struct XHCIPort {
300f1ae32a1SGerd Hoffmann     USBPort port;
301f1ae32a1SGerd Hoffmann     uint32_t portsc;
302f1ae32a1SGerd Hoffmann } XHCIPort;
303f1ae32a1SGerd Hoffmann 
304f1ae32a1SGerd Hoffmann struct XHCIState;
305f1ae32a1SGerd Hoffmann typedef struct XHCIState XHCIState;
306f1ae32a1SGerd Hoffmann 
307f1ae32a1SGerd Hoffmann typedef struct XHCITransfer {
308f1ae32a1SGerd Hoffmann     XHCIState *xhci;
309f1ae32a1SGerd Hoffmann     USBPacket packet;
310f1ae32a1SGerd Hoffmann     bool running_async;
311f1ae32a1SGerd Hoffmann     bool running_retry;
312f1ae32a1SGerd Hoffmann     bool cancelled;
313f1ae32a1SGerd Hoffmann     bool complete;
314f1ae32a1SGerd Hoffmann     bool backgrounded;
315f1ae32a1SGerd Hoffmann     unsigned int iso_pkts;
316f1ae32a1SGerd Hoffmann     unsigned int slotid;
317f1ae32a1SGerd Hoffmann     unsigned int epid;
318f1ae32a1SGerd Hoffmann     bool in_xfer;
319f1ae32a1SGerd Hoffmann     bool iso_xfer;
320f1ae32a1SGerd Hoffmann     bool bg_xfer;
321f1ae32a1SGerd Hoffmann 
322f1ae32a1SGerd Hoffmann     unsigned int trb_count;
323f1ae32a1SGerd Hoffmann     unsigned int trb_alloced;
324f1ae32a1SGerd Hoffmann     XHCITRB *trbs;
325f1ae32a1SGerd Hoffmann 
326f1ae32a1SGerd Hoffmann     unsigned int data_length;
327f1ae32a1SGerd Hoffmann     unsigned int data_alloced;
328f1ae32a1SGerd Hoffmann     uint8_t *data;
329f1ae32a1SGerd Hoffmann 
330f1ae32a1SGerd Hoffmann     TRBCCode status;
331f1ae32a1SGerd Hoffmann 
332f1ae32a1SGerd Hoffmann     unsigned int pkts;
333f1ae32a1SGerd Hoffmann     unsigned int pktsize;
334f1ae32a1SGerd Hoffmann     unsigned int cur_pkt;
335f1ae32a1SGerd Hoffmann } XHCITransfer;
336f1ae32a1SGerd Hoffmann 
337f1ae32a1SGerd Hoffmann typedef struct XHCIEPContext {
338f1ae32a1SGerd Hoffmann     XHCIRing ring;
339f1ae32a1SGerd Hoffmann     unsigned int next_xfer;
340f1ae32a1SGerd Hoffmann     unsigned int comp_xfer;
341f1ae32a1SGerd Hoffmann     XHCITransfer transfers[TD_QUEUE];
342f1ae32a1SGerd Hoffmann     XHCITransfer *retry;
343f1ae32a1SGerd Hoffmann     bool bg_running;
344f1ae32a1SGerd Hoffmann     bool bg_updating;
345f1ae32a1SGerd Hoffmann     unsigned int next_bg;
346f1ae32a1SGerd Hoffmann     XHCITransfer bg_transfers[BG_XFERS];
347f1ae32a1SGerd Hoffmann     EPType type;
34859a70ccdSDavid Gibson     dma_addr_t pctx;
349f1ae32a1SGerd Hoffmann     unsigned int max_psize;
350f1ae32a1SGerd Hoffmann     bool has_bg;
351f1ae32a1SGerd Hoffmann     uint32_t state;
352f1ae32a1SGerd Hoffmann } XHCIEPContext;
353f1ae32a1SGerd Hoffmann 
354f1ae32a1SGerd Hoffmann typedef struct XHCISlot {
355f1ae32a1SGerd Hoffmann     bool enabled;
35659a70ccdSDavid Gibson     dma_addr_t ctx;
357f1ae32a1SGerd Hoffmann     unsigned int port;
358f1ae32a1SGerd Hoffmann     unsigned int devaddr;
359f1ae32a1SGerd Hoffmann     XHCIEPContext * eps[31];
360f1ae32a1SGerd Hoffmann } XHCISlot;
361f1ae32a1SGerd Hoffmann 
362f1ae32a1SGerd Hoffmann typedef struct XHCIEvent {
363f1ae32a1SGerd Hoffmann     TRBType type;
364f1ae32a1SGerd Hoffmann     TRBCCode ccode;
365f1ae32a1SGerd Hoffmann     uint64_t ptr;
366f1ae32a1SGerd Hoffmann     uint32_t length;
367f1ae32a1SGerd Hoffmann     uint32_t flags;
368f1ae32a1SGerd Hoffmann     uint8_t slotid;
369f1ae32a1SGerd Hoffmann     uint8_t epid;
370f1ae32a1SGerd Hoffmann } XHCIEvent;
371f1ae32a1SGerd Hoffmann 
372f1ae32a1SGerd Hoffmann struct XHCIState {
373f1ae32a1SGerd Hoffmann     PCIDevice pci_dev;
374f1ae32a1SGerd Hoffmann     USBBus bus;
375f1ae32a1SGerd Hoffmann     qemu_irq irq;
376f1ae32a1SGerd Hoffmann     MemoryRegion mem;
377f1ae32a1SGerd Hoffmann     const char *name;
378f1ae32a1SGerd Hoffmann     uint32_t msi;
379f1ae32a1SGerd Hoffmann     unsigned int devaddr;
380f1ae32a1SGerd Hoffmann 
381f1ae32a1SGerd Hoffmann     /* Operational Registers */
382f1ae32a1SGerd Hoffmann     uint32_t usbcmd;
383f1ae32a1SGerd Hoffmann     uint32_t usbsts;
384f1ae32a1SGerd Hoffmann     uint32_t dnctrl;
385f1ae32a1SGerd Hoffmann     uint32_t crcr_low;
386f1ae32a1SGerd Hoffmann     uint32_t crcr_high;
387f1ae32a1SGerd Hoffmann     uint32_t dcbaap_low;
388f1ae32a1SGerd Hoffmann     uint32_t dcbaap_high;
389f1ae32a1SGerd Hoffmann     uint32_t config;
390f1ae32a1SGerd Hoffmann 
391f1ae32a1SGerd Hoffmann     XHCIPort ports[MAXPORTS];
392f1ae32a1SGerd Hoffmann     XHCISlot slots[MAXSLOTS];
393f1ae32a1SGerd Hoffmann 
394f1ae32a1SGerd Hoffmann     /* Runtime Registers */
395f1ae32a1SGerd Hoffmann     uint32_t mfindex;
396f1ae32a1SGerd Hoffmann     /* note: we only support one interrupter */
397f1ae32a1SGerd Hoffmann     uint32_t iman;
398f1ae32a1SGerd Hoffmann     uint32_t imod;
399f1ae32a1SGerd Hoffmann     uint32_t erstsz;
400f1ae32a1SGerd Hoffmann     uint32_t erstba_low;
401f1ae32a1SGerd Hoffmann     uint32_t erstba_high;
402f1ae32a1SGerd Hoffmann     uint32_t erdp_low;
403f1ae32a1SGerd Hoffmann     uint32_t erdp_high;
404f1ae32a1SGerd Hoffmann 
40559a70ccdSDavid Gibson     dma_addr_t er_start;
406f1ae32a1SGerd Hoffmann     uint32_t er_size;
407f1ae32a1SGerd Hoffmann     bool er_pcs;
408f1ae32a1SGerd Hoffmann     unsigned int er_ep_idx;
409f1ae32a1SGerd Hoffmann     bool er_full;
410f1ae32a1SGerd Hoffmann 
411f1ae32a1SGerd Hoffmann     XHCIEvent ev_buffer[EV_QUEUE];
412f1ae32a1SGerd Hoffmann     unsigned int ev_buffer_put;
413f1ae32a1SGerd Hoffmann     unsigned int ev_buffer_get;
414f1ae32a1SGerd Hoffmann 
415f1ae32a1SGerd Hoffmann     XHCIRing cmd_ring;
416f1ae32a1SGerd Hoffmann };
417f1ae32a1SGerd Hoffmann 
418f1ae32a1SGerd Hoffmann typedef struct XHCIEvRingSeg {
419f1ae32a1SGerd Hoffmann     uint32_t addr_low;
420f1ae32a1SGerd Hoffmann     uint32_t addr_high;
421f1ae32a1SGerd Hoffmann     uint32_t size;
422f1ae32a1SGerd Hoffmann     uint32_t rsvd;
423f1ae32a1SGerd Hoffmann } XHCIEvRingSeg;
424f1ae32a1SGerd Hoffmann 
425f1ae32a1SGerd Hoffmann static const char *TRBType_names[] = {
426f1ae32a1SGerd Hoffmann     [TRB_RESERVED]                     = "TRB_RESERVED",
427f1ae32a1SGerd Hoffmann     [TR_NORMAL]                        = "TR_NORMAL",
428f1ae32a1SGerd Hoffmann     [TR_SETUP]                         = "TR_SETUP",
429f1ae32a1SGerd Hoffmann     [TR_DATA]                          = "TR_DATA",
430f1ae32a1SGerd Hoffmann     [TR_STATUS]                        = "TR_STATUS",
431f1ae32a1SGerd Hoffmann     [TR_ISOCH]                         = "TR_ISOCH",
432f1ae32a1SGerd Hoffmann     [TR_LINK]                          = "TR_LINK",
433f1ae32a1SGerd Hoffmann     [TR_EVDATA]                        = "TR_EVDATA",
434f1ae32a1SGerd Hoffmann     [TR_NOOP]                          = "TR_NOOP",
435f1ae32a1SGerd Hoffmann     [CR_ENABLE_SLOT]                   = "CR_ENABLE_SLOT",
436f1ae32a1SGerd Hoffmann     [CR_DISABLE_SLOT]                  = "CR_DISABLE_SLOT",
437f1ae32a1SGerd Hoffmann     [CR_ADDRESS_DEVICE]                = "CR_ADDRESS_DEVICE",
438f1ae32a1SGerd Hoffmann     [CR_CONFIGURE_ENDPOINT]            = "CR_CONFIGURE_ENDPOINT",
439f1ae32a1SGerd Hoffmann     [CR_EVALUATE_CONTEXT]              = "CR_EVALUATE_CONTEXT",
440f1ae32a1SGerd Hoffmann     [CR_RESET_ENDPOINT]                = "CR_RESET_ENDPOINT",
441f1ae32a1SGerd Hoffmann     [CR_STOP_ENDPOINT]                 = "CR_STOP_ENDPOINT",
442f1ae32a1SGerd Hoffmann     [CR_SET_TR_DEQUEUE]                = "CR_SET_TR_DEQUEUE",
443f1ae32a1SGerd Hoffmann     [CR_RESET_DEVICE]                  = "CR_RESET_DEVICE",
444f1ae32a1SGerd Hoffmann     [CR_FORCE_EVENT]                   = "CR_FORCE_EVENT",
445f1ae32a1SGerd Hoffmann     [CR_NEGOTIATE_BW]                  = "CR_NEGOTIATE_BW",
446f1ae32a1SGerd Hoffmann     [CR_SET_LATENCY_TOLERANCE]         = "CR_SET_LATENCY_TOLERANCE",
447f1ae32a1SGerd Hoffmann     [CR_GET_PORT_BANDWIDTH]            = "CR_GET_PORT_BANDWIDTH",
448f1ae32a1SGerd Hoffmann     [CR_FORCE_HEADER]                  = "CR_FORCE_HEADER",
449f1ae32a1SGerd Hoffmann     [CR_NOOP]                          = "CR_NOOP",
450f1ae32a1SGerd Hoffmann     [ER_TRANSFER]                      = "ER_TRANSFER",
451f1ae32a1SGerd Hoffmann     [ER_COMMAND_COMPLETE]              = "ER_COMMAND_COMPLETE",
452f1ae32a1SGerd Hoffmann     [ER_PORT_STATUS_CHANGE]            = "ER_PORT_STATUS_CHANGE",
453f1ae32a1SGerd Hoffmann     [ER_BANDWIDTH_REQUEST]             = "ER_BANDWIDTH_REQUEST",
454f1ae32a1SGerd Hoffmann     [ER_DOORBELL]                      = "ER_DOORBELL",
455f1ae32a1SGerd Hoffmann     [ER_HOST_CONTROLLER]               = "ER_HOST_CONTROLLER",
456f1ae32a1SGerd Hoffmann     [ER_DEVICE_NOTIFICATION]           = "ER_DEVICE_NOTIFICATION",
457f1ae32a1SGerd Hoffmann     [ER_MFINDEX_WRAP]                  = "ER_MFINDEX_WRAP",
458f1ae32a1SGerd Hoffmann     [CR_VENDOR_VIA_CHALLENGE_RESPONSE] = "CR_VENDOR_VIA_CHALLENGE_RESPONSE",
459f1ae32a1SGerd Hoffmann     [CR_VENDOR_NEC_FIRMWARE_REVISION]  = "CR_VENDOR_NEC_FIRMWARE_REVISION",
460f1ae32a1SGerd Hoffmann     [CR_VENDOR_NEC_CHALLENGE_RESPONSE] = "CR_VENDOR_NEC_CHALLENGE_RESPONSE",
461f1ae32a1SGerd Hoffmann };
462f1ae32a1SGerd Hoffmann 
463f1ae32a1SGerd Hoffmann static const char *lookup_name(uint32_t index, const char **list, uint32_t llen)
464f1ae32a1SGerd Hoffmann {
465f1ae32a1SGerd Hoffmann     if (index >= llen || list[index] == NULL) {
466f1ae32a1SGerd Hoffmann         return "???";
467f1ae32a1SGerd Hoffmann     }
468f1ae32a1SGerd Hoffmann     return list[index];
469f1ae32a1SGerd Hoffmann }
470f1ae32a1SGerd Hoffmann 
471f1ae32a1SGerd Hoffmann static const char *trb_name(XHCITRB *trb)
472f1ae32a1SGerd Hoffmann {
473f1ae32a1SGerd Hoffmann     return lookup_name(TRB_TYPE(*trb), TRBType_names,
474f1ae32a1SGerd Hoffmann                        ARRAY_SIZE(TRBType_names));
475f1ae32a1SGerd Hoffmann }
476f1ae32a1SGerd Hoffmann 
477f1ae32a1SGerd Hoffmann static void xhci_kick_ep(XHCIState *xhci, unsigned int slotid,
478f1ae32a1SGerd Hoffmann                          unsigned int epid);
479f1ae32a1SGerd Hoffmann 
48059a70ccdSDavid Gibson static inline dma_addr_t xhci_addr64(uint32_t low, uint32_t high)
481f1ae32a1SGerd Hoffmann {
48259a70ccdSDavid Gibson     if (sizeof(dma_addr_t) == 4) {
483f1ae32a1SGerd Hoffmann         return low;
48459a70ccdSDavid Gibson     } else {
48559a70ccdSDavid Gibson         return low | (((dma_addr_t)high << 16) << 16);
48659a70ccdSDavid Gibson     }
487f1ae32a1SGerd Hoffmann }
488f1ae32a1SGerd Hoffmann 
48959a70ccdSDavid Gibson static inline dma_addr_t xhci_mask64(uint64_t addr)
490f1ae32a1SGerd Hoffmann {
49159a70ccdSDavid Gibson     if (sizeof(dma_addr_t) == 4) {
492f1ae32a1SGerd Hoffmann         return addr & 0xffffffff;
49359a70ccdSDavid Gibson     } else {
49459a70ccdSDavid Gibson         return addr;
49559a70ccdSDavid Gibson     }
496f1ae32a1SGerd Hoffmann }
497f1ae32a1SGerd Hoffmann 
498f1ae32a1SGerd Hoffmann static void xhci_irq_update(XHCIState *xhci)
499f1ae32a1SGerd Hoffmann {
500f1ae32a1SGerd Hoffmann     int level = 0;
501f1ae32a1SGerd Hoffmann 
502f1ae32a1SGerd Hoffmann     if (xhci->iman & IMAN_IP && xhci->iman & IMAN_IE &&
503215bff17SLai Jiangshan         xhci->usbcmd & USBCMD_INTE) {
504f1ae32a1SGerd Hoffmann         level = 1;
505f1ae32a1SGerd Hoffmann     }
506f1ae32a1SGerd Hoffmann 
507f1ae32a1SGerd Hoffmann     if (xhci->msi && msi_enabled(&xhci->pci_dev)) {
508f1ae32a1SGerd Hoffmann         if (level) {
5097acd279fSGerd Hoffmann             trace_usb_xhci_irq_msi(0);
510f1ae32a1SGerd Hoffmann             msi_notify(&xhci->pci_dev, 0);
511f1ae32a1SGerd Hoffmann         }
512f1ae32a1SGerd Hoffmann     } else {
5137acd279fSGerd Hoffmann         trace_usb_xhci_irq_intx(level);
514f1ae32a1SGerd Hoffmann         qemu_set_irq(xhci->irq, level);
515f1ae32a1SGerd Hoffmann     }
516f1ae32a1SGerd Hoffmann }
517f1ae32a1SGerd Hoffmann 
518f1ae32a1SGerd Hoffmann static inline int xhci_running(XHCIState *xhci)
519f1ae32a1SGerd Hoffmann {
520f1ae32a1SGerd Hoffmann     return !(xhci->usbsts & USBSTS_HCH) && !xhci->er_full;
521f1ae32a1SGerd Hoffmann }
522f1ae32a1SGerd Hoffmann 
523f1ae32a1SGerd Hoffmann static void xhci_die(XHCIState *xhci)
524f1ae32a1SGerd Hoffmann {
525f1ae32a1SGerd Hoffmann     xhci->usbsts |= USBSTS_HCE;
526f1ae32a1SGerd Hoffmann     fprintf(stderr, "xhci: asserted controller error\n");
527f1ae32a1SGerd Hoffmann }
528f1ae32a1SGerd Hoffmann 
529f1ae32a1SGerd Hoffmann static void xhci_write_event(XHCIState *xhci, XHCIEvent *event)
530f1ae32a1SGerd Hoffmann {
531f1ae32a1SGerd Hoffmann     XHCITRB ev_trb;
53259a70ccdSDavid Gibson     dma_addr_t addr;
533f1ae32a1SGerd Hoffmann 
534f1ae32a1SGerd Hoffmann     ev_trb.parameter = cpu_to_le64(event->ptr);
535f1ae32a1SGerd Hoffmann     ev_trb.status = cpu_to_le32(event->length | (event->ccode << 24));
536f1ae32a1SGerd Hoffmann     ev_trb.control = (event->slotid << 24) | (event->epid << 16) |
537f1ae32a1SGerd Hoffmann                      event->flags | (event->type << TRB_TYPE_SHIFT);
538f1ae32a1SGerd Hoffmann     if (xhci->er_pcs) {
539f1ae32a1SGerd Hoffmann         ev_trb.control |= TRB_C;
540f1ae32a1SGerd Hoffmann     }
541f1ae32a1SGerd Hoffmann     ev_trb.control = cpu_to_le32(ev_trb.control);
542f1ae32a1SGerd Hoffmann 
5437acd279fSGerd Hoffmann     trace_usb_xhci_queue_event(xhci->er_ep_idx, trb_name(&ev_trb),
5447acd279fSGerd Hoffmann                                ev_trb.parameter, ev_trb.status, ev_trb.control);
545f1ae32a1SGerd Hoffmann 
546f1ae32a1SGerd Hoffmann     addr = xhci->er_start + TRB_SIZE*xhci->er_ep_idx;
54759a70ccdSDavid Gibson     pci_dma_write(&xhci->pci_dev, addr, &ev_trb, TRB_SIZE);
548f1ae32a1SGerd Hoffmann 
549f1ae32a1SGerd Hoffmann     xhci->er_ep_idx++;
550f1ae32a1SGerd Hoffmann     if (xhci->er_ep_idx >= xhci->er_size) {
551f1ae32a1SGerd Hoffmann         xhci->er_ep_idx = 0;
552f1ae32a1SGerd Hoffmann         xhci->er_pcs = !xhci->er_pcs;
553f1ae32a1SGerd Hoffmann     }
554f1ae32a1SGerd Hoffmann }
555f1ae32a1SGerd Hoffmann 
556f1ae32a1SGerd Hoffmann static void xhci_events_update(XHCIState *xhci)
557f1ae32a1SGerd Hoffmann {
55859a70ccdSDavid Gibson     dma_addr_t erdp;
559f1ae32a1SGerd Hoffmann     unsigned int dp_idx;
560f1ae32a1SGerd Hoffmann     bool do_irq = 0;
561f1ae32a1SGerd Hoffmann 
562f1ae32a1SGerd Hoffmann     if (xhci->usbsts & USBSTS_HCH) {
563f1ae32a1SGerd Hoffmann         return;
564f1ae32a1SGerd Hoffmann     }
565f1ae32a1SGerd Hoffmann 
566f1ae32a1SGerd Hoffmann     erdp = xhci_addr64(xhci->erdp_low, xhci->erdp_high);
567f1ae32a1SGerd Hoffmann     if (erdp < xhci->er_start ||
568f1ae32a1SGerd Hoffmann         erdp >= (xhci->er_start + TRB_SIZE*xhci->er_size)) {
56959a70ccdSDavid Gibson         fprintf(stderr, "xhci: ERDP out of bounds: "DMA_ADDR_FMT"\n", erdp);
57059a70ccdSDavid Gibson         fprintf(stderr, "xhci: ER at "DMA_ADDR_FMT" len %d\n",
571f1ae32a1SGerd Hoffmann                 xhci->er_start, xhci->er_size);
572f1ae32a1SGerd Hoffmann         xhci_die(xhci);
573f1ae32a1SGerd Hoffmann         return;
574f1ae32a1SGerd Hoffmann     }
575f1ae32a1SGerd Hoffmann     dp_idx = (erdp - xhci->er_start) / TRB_SIZE;
576f1ae32a1SGerd Hoffmann     assert(dp_idx < xhci->er_size);
577f1ae32a1SGerd Hoffmann 
578f1ae32a1SGerd Hoffmann     /* NEC didn't read section 4.9.4 of the spec (v1.0 p139 top Note) and thus
579f1ae32a1SGerd Hoffmann      * deadlocks when the ER is full. Hack it by holding off events until
580f1ae32a1SGerd Hoffmann      * the driver decides to free at least half of the ring */
581f1ae32a1SGerd Hoffmann     if (xhci->er_full) {
582f1ae32a1SGerd Hoffmann         int er_free = dp_idx - xhci->er_ep_idx;
583f1ae32a1SGerd Hoffmann         if (er_free <= 0) {
584f1ae32a1SGerd Hoffmann             er_free += xhci->er_size;
585f1ae32a1SGerd Hoffmann         }
586f1ae32a1SGerd Hoffmann         if (er_free < (xhci->er_size/2)) {
587f1ae32a1SGerd Hoffmann             DPRINTF("xhci_events_update(): event ring still "
588f1ae32a1SGerd Hoffmann                     "more than half full (hack)\n");
589f1ae32a1SGerd Hoffmann             return;
590f1ae32a1SGerd Hoffmann         }
591f1ae32a1SGerd Hoffmann     }
592f1ae32a1SGerd Hoffmann 
593f1ae32a1SGerd Hoffmann     while (xhci->ev_buffer_put != xhci->ev_buffer_get) {
594f1ae32a1SGerd Hoffmann         assert(xhci->er_full);
595f1ae32a1SGerd Hoffmann         if (((xhci->er_ep_idx+1) % xhci->er_size) == dp_idx) {
596f1ae32a1SGerd Hoffmann             DPRINTF("xhci_events_update(): event ring full again\n");
597f1ae32a1SGerd Hoffmann #ifndef ER_FULL_HACK
598f1ae32a1SGerd Hoffmann             XHCIEvent full = {ER_HOST_CONTROLLER, CC_EVENT_RING_FULL_ERROR};
599f1ae32a1SGerd Hoffmann             xhci_write_event(xhci, &full);
600f1ae32a1SGerd Hoffmann #endif
601f1ae32a1SGerd Hoffmann             do_irq = 1;
602f1ae32a1SGerd Hoffmann             break;
603f1ae32a1SGerd Hoffmann         }
604f1ae32a1SGerd Hoffmann         XHCIEvent *event = &xhci->ev_buffer[xhci->ev_buffer_get];
605f1ae32a1SGerd Hoffmann         xhci_write_event(xhci, event);
606f1ae32a1SGerd Hoffmann         xhci->ev_buffer_get++;
607f1ae32a1SGerd Hoffmann         do_irq = 1;
608f1ae32a1SGerd Hoffmann         if (xhci->ev_buffer_get == EV_QUEUE) {
609f1ae32a1SGerd Hoffmann             xhci->ev_buffer_get = 0;
610f1ae32a1SGerd Hoffmann         }
611f1ae32a1SGerd Hoffmann     }
612f1ae32a1SGerd Hoffmann 
613f1ae32a1SGerd Hoffmann     if (do_irq) {
614f1ae32a1SGerd Hoffmann         xhci->erdp_low |= ERDP_EHB;
615f1ae32a1SGerd Hoffmann         xhci->iman |= IMAN_IP;
616f1ae32a1SGerd Hoffmann         xhci->usbsts |= USBSTS_EINT;
617f1ae32a1SGerd Hoffmann         xhci_irq_update(xhci);
618f1ae32a1SGerd Hoffmann     }
619f1ae32a1SGerd Hoffmann 
620f1ae32a1SGerd Hoffmann     if (xhci->er_full && xhci->ev_buffer_put == xhci->ev_buffer_get) {
621f1ae32a1SGerd Hoffmann         DPRINTF("xhci_events_update(): event ring no longer full\n");
622f1ae32a1SGerd Hoffmann         xhci->er_full = 0;
623f1ae32a1SGerd Hoffmann     }
624f1ae32a1SGerd Hoffmann     return;
625f1ae32a1SGerd Hoffmann }
626f1ae32a1SGerd Hoffmann 
627f1ae32a1SGerd Hoffmann static void xhci_event(XHCIState *xhci, XHCIEvent *event)
628f1ae32a1SGerd Hoffmann {
62959a70ccdSDavid Gibson     dma_addr_t erdp;
630f1ae32a1SGerd Hoffmann     unsigned int dp_idx;
631f1ae32a1SGerd Hoffmann 
632f1ae32a1SGerd Hoffmann     if (xhci->er_full) {
633f1ae32a1SGerd Hoffmann         DPRINTF("xhci_event(): ER full, queueing\n");
634f1ae32a1SGerd Hoffmann         if (((xhci->ev_buffer_put+1) % EV_QUEUE) == xhci->ev_buffer_get) {
635f1ae32a1SGerd Hoffmann             fprintf(stderr, "xhci: event queue full, dropping event!\n");
636f1ae32a1SGerd Hoffmann             return;
637f1ae32a1SGerd Hoffmann         }
638f1ae32a1SGerd Hoffmann         xhci->ev_buffer[xhci->ev_buffer_put++] = *event;
639f1ae32a1SGerd Hoffmann         if (xhci->ev_buffer_put == EV_QUEUE) {
640f1ae32a1SGerd Hoffmann             xhci->ev_buffer_put = 0;
641f1ae32a1SGerd Hoffmann         }
642f1ae32a1SGerd Hoffmann         return;
643f1ae32a1SGerd Hoffmann     }
644f1ae32a1SGerd Hoffmann 
645f1ae32a1SGerd Hoffmann     erdp = xhci_addr64(xhci->erdp_low, xhci->erdp_high);
646f1ae32a1SGerd Hoffmann     if (erdp < xhci->er_start ||
647f1ae32a1SGerd Hoffmann         erdp >= (xhci->er_start + TRB_SIZE*xhci->er_size)) {
64859a70ccdSDavid Gibson         fprintf(stderr, "xhci: ERDP out of bounds: "DMA_ADDR_FMT"\n", erdp);
64959a70ccdSDavid Gibson         fprintf(stderr, "xhci: ER at "DMA_ADDR_FMT" len %d\n",
650f1ae32a1SGerd Hoffmann                 xhci->er_start, xhci->er_size);
651f1ae32a1SGerd Hoffmann         xhci_die(xhci);
652f1ae32a1SGerd Hoffmann         return;
653f1ae32a1SGerd Hoffmann     }
654f1ae32a1SGerd Hoffmann 
655f1ae32a1SGerd Hoffmann     dp_idx = (erdp - xhci->er_start) / TRB_SIZE;
656f1ae32a1SGerd Hoffmann     assert(dp_idx < xhci->er_size);
657f1ae32a1SGerd Hoffmann 
658f1ae32a1SGerd Hoffmann     if ((xhci->er_ep_idx+1) % xhci->er_size == dp_idx) {
659f1ae32a1SGerd Hoffmann         DPRINTF("xhci_event(): ER full, queueing\n");
660f1ae32a1SGerd Hoffmann #ifndef ER_FULL_HACK
661f1ae32a1SGerd Hoffmann         XHCIEvent full = {ER_HOST_CONTROLLER, CC_EVENT_RING_FULL_ERROR};
662f1ae32a1SGerd Hoffmann         xhci_write_event(xhci, &full);
663f1ae32a1SGerd Hoffmann #endif
664f1ae32a1SGerd Hoffmann         xhci->er_full = 1;
665f1ae32a1SGerd Hoffmann         if (((xhci->ev_buffer_put+1) % EV_QUEUE) == xhci->ev_buffer_get) {
666f1ae32a1SGerd Hoffmann             fprintf(stderr, "xhci: event queue full, dropping event!\n");
667f1ae32a1SGerd Hoffmann             return;
668f1ae32a1SGerd Hoffmann         }
669f1ae32a1SGerd Hoffmann         xhci->ev_buffer[xhci->ev_buffer_put++] = *event;
670f1ae32a1SGerd Hoffmann         if (xhci->ev_buffer_put == EV_QUEUE) {
671f1ae32a1SGerd Hoffmann             xhci->ev_buffer_put = 0;
672f1ae32a1SGerd Hoffmann         }
673f1ae32a1SGerd Hoffmann     } else {
674f1ae32a1SGerd Hoffmann         xhci_write_event(xhci, event);
675f1ae32a1SGerd Hoffmann     }
676f1ae32a1SGerd Hoffmann 
677f1ae32a1SGerd Hoffmann     xhci->erdp_low |= ERDP_EHB;
678f1ae32a1SGerd Hoffmann     xhci->iman |= IMAN_IP;
679f1ae32a1SGerd Hoffmann     xhci->usbsts |= USBSTS_EINT;
680f1ae32a1SGerd Hoffmann 
681f1ae32a1SGerd Hoffmann     xhci_irq_update(xhci);
682f1ae32a1SGerd Hoffmann }
683f1ae32a1SGerd Hoffmann 
684f1ae32a1SGerd Hoffmann static void xhci_ring_init(XHCIState *xhci, XHCIRing *ring,
68559a70ccdSDavid Gibson                            dma_addr_t base)
686f1ae32a1SGerd Hoffmann {
687f1ae32a1SGerd Hoffmann     ring->base = base;
688f1ae32a1SGerd Hoffmann     ring->dequeue = base;
689f1ae32a1SGerd Hoffmann     ring->ccs = 1;
690f1ae32a1SGerd Hoffmann }
691f1ae32a1SGerd Hoffmann 
692f1ae32a1SGerd Hoffmann static TRBType xhci_ring_fetch(XHCIState *xhci, XHCIRing *ring, XHCITRB *trb,
69359a70ccdSDavid Gibson                                dma_addr_t *addr)
694f1ae32a1SGerd Hoffmann {
695f1ae32a1SGerd Hoffmann     while (1) {
696f1ae32a1SGerd Hoffmann         TRBType type;
69759a70ccdSDavid Gibson         pci_dma_read(&xhci->pci_dev, ring->dequeue, trb, TRB_SIZE);
698f1ae32a1SGerd Hoffmann         trb->addr = ring->dequeue;
699f1ae32a1SGerd Hoffmann         trb->ccs = ring->ccs;
700f1ae32a1SGerd Hoffmann         le64_to_cpus(&trb->parameter);
701f1ae32a1SGerd Hoffmann         le32_to_cpus(&trb->status);
702f1ae32a1SGerd Hoffmann         le32_to_cpus(&trb->control);
703f1ae32a1SGerd Hoffmann 
7040703a4a7SGerd Hoffmann         trace_usb_xhci_fetch_trb(ring->dequeue, trb_name(trb),
7050703a4a7SGerd Hoffmann                                  trb->parameter, trb->status, trb->control);
706f1ae32a1SGerd Hoffmann 
707f1ae32a1SGerd Hoffmann         if ((trb->control & TRB_C) != ring->ccs) {
708f1ae32a1SGerd Hoffmann             return 0;
709f1ae32a1SGerd Hoffmann         }
710f1ae32a1SGerd Hoffmann 
711f1ae32a1SGerd Hoffmann         type = TRB_TYPE(*trb);
712f1ae32a1SGerd Hoffmann 
713f1ae32a1SGerd Hoffmann         if (type != TR_LINK) {
714f1ae32a1SGerd Hoffmann             if (addr) {
715f1ae32a1SGerd Hoffmann                 *addr = ring->dequeue;
716f1ae32a1SGerd Hoffmann             }
717f1ae32a1SGerd Hoffmann             ring->dequeue += TRB_SIZE;
718f1ae32a1SGerd Hoffmann             return type;
719f1ae32a1SGerd Hoffmann         } else {
720f1ae32a1SGerd Hoffmann             ring->dequeue = xhci_mask64(trb->parameter);
721f1ae32a1SGerd Hoffmann             if (trb->control & TRB_LK_TC) {
722f1ae32a1SGerd Hoffmann                 ring->ccs = !ring->ccs;
723f1ae32a1SGerd Hoffmann             }
724f1ae32a1SGerd Hoffmann         }
725f1ae32a1SGerd Hoffmann     }
726f1ae32a1SGerd Hoffmann }
727f1ae32a1SGerd Hoffmann 
728f1ae32a1SGerd Hoffmann static int xhci_ring_chain_length(XHCIState *xhci, const XHCIRing *ring)
729f1ae32a1SGerd Hoffmann {
730f1ae32a1SGerd Hoffmann     XHCITRB trb;
731f1ae32a1SGerd Hoffmann     int length = 0;
73259a70ccdSDavid Gibson     dma_addr_t dequeue = ring->dequeue;
733f1ae32a1SGerd Hoffmann     bool ccs = ring->ccs;
734f1ae32a1SGerd Hoffmann     /* hack to bundle together the two/three TDs that make a setup transfer */
735f1ae32a1SGerd Hoffmann     bool control_td_set = 0;
736f1ae32a1SGerd Hoffmann 
737f1ae32a1SGerd Hoffmann     while (1) {
738f1ae32a1SGerd Hoffmann         TRBType type;
73959a70ccdSDavid Gibson         pci_dma_read(&xhci->pci_dev, dequeue, &trb, TRB_SIZE);
740f1ae32a1SGerd Hoffmann         le64_to_cpus(&trb.parameter);
741f1ae32a1SGerd Hoffmann         le32_to_cpus(&trb.status);
742f1ae32a1SGerd Hoffmann         le32_to_cpus(&trb.control);
743f1ae32a1SGerd Hoffmann 
744f1ae32a1SGerd Hoffmann         if ((trb.control & TRB_C) != ccs) {
745f1ae32a1SGerd Hoffmann             return -length;
746f1ae32a1SGerd Hoffmann         }
747f1ae32a1SGerd Hoffmann 
748f1ae32a1SGerd Hoffmann         type = TRB_TYPE(trb);
749f1ae32a1SGerd Hoffmann 
750f1ae32a1SGerd Hoffmann         if (type == TR_LINK) {
751f1ae32a1SGerd Hoffmann             dequeue = xhci_mask64(trb.parameter);
752f1ae32a1SGerd Hoffmann             if (trb.control & TRB_LK_TC) {
753f1ae32a1SGerd Hoffmann                 ccs = !ccs;
754f1ae32a1SGerd Hoffmann             }
755f1ae32a1SGerd Hoffmann             continue;
756f1ae32a1SGerd Hoffmann         }
757f1ae32a1SGerd Hoffmann 
758f1ae32a1SGerd Hoffmann         length += 1;
759f1ae32a1SGerd Hoffmann         dequeue += TRB_SIZE;
760f1ae32a1SGerd Hoffmann 
761f1ae32a1SGerd Hoffmann         if (type == TR_SETUP) {
762f1ae32a1SGerd Hoffmann             control_td_set = 1;
763f1ae32a1SGerd Hoffmann         } else if (type == TR_STATUS) {
764f1ae32a1SGerd Hoffmann             control_td_set = 0;
765f1ae32a1SGerd Hoffmann         }
766f1ae32a1SGerd Hoffmann 
767f1ae32a1SGerd Hoffmann         if (!control_td_set && !(trb.control & TRB_TR_CH)) {
768f1ae32a1SGerd Hoffmann             return length;
769f1ae32a1SGerd Hoffmann         }
770f1ae32a1SGerd Hoffmann     }
771f1ae32a1SGerd Hoffmann }
772f1ae32a1SGerd Hoffmann 
773f1ae32a1SGerd Hoffmann static void xhci_er_reset(XHCIState *xhci)
774f1ae32a1SGerd Hoffmann {
775f1ae32a1SGerd Hoffmann     XHCIEvRingSeg seg;
776f1ae32a1SGerd Hoffmann 
777f1ae32a1SGerd Hoffmann     /* cache the (sole) event ring segment location */
778f1ae32a1SGerd Hoffmann     if (xhci->erstsz != 1) {
779f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: invalid value for ERSTSZ: %d\n", xhci->erstsz);
780f1ae32a1SGerd Hoffmann         xhci_die(xhci);
781f1ae32a1SGerd Hoffmann         return;
782f1ae32a1SGerd Hoffmann     }
78359a70ccdSDavid Gibson     dma_addr_t erstba = xhci_addr64(xhci->erstba_low, xhci->erstba_high);
78459a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, erstba, &seg, sizeof(seg));
785f1ae32a1SGerd Hoffmann     le32_to_cpus(&seg.addr_low);
786f1ae32a1SGerd Hoffmann     le32_to_cpus(&seg.addr_high);
787f1ae32a1SGerd Hoffmann     le32_to_cpus(&seg.size);
788f1ae32a1SGerd Hoffmann     if (seg.size < 16 || seg.size > 4096) {
789f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: invalid value for segment size: %d\n", seg.size);
790f1ae32a1SGerd Hoffmann         xhci_die(xhci);
791f1ae32a1SGerd Hoffmann         return;
792f1ae32a1SGerd Hoffmann     }
793f1ae32a1SGerd Hoffmann     xhci->er_start = xhci_addr64(seg.addr_low, seg.addr_high);
794f1ae32a1SGerd Hoffmann     xhci->er_size = seg.size;
795f1ae32a1SGerd Hoffmann 
796f1ae32a1SGerd Hoffmann     xhci->er_ep_idx = 0;
797f1ae32a1SGerd Hoffmann     xhci->er_pcs = 1;
798f1ae32a1SGerd Hoffmann     xhci->er_full = 0;
799f1ae32a1SGerd Hoffmann 
80059a70ccdSDavid Gibson     DPRINTF("xhci: event ring:" DMA_ADDR_FMT " [%d]\n",
801f1ae32a1SGerd Hoffmann             xhci->er_start, xhci->er_size);
802f1ae32a1SGerd Hoffmann }
803f1ae32a1SGerd Hoffmann 
804f1ae32a1SGerd Hoffmann static void xhci_run(XHCIState *xhci)
805f1ae32a1SGerd Hoffmann {
806fc0ddacaSGerd Hoffmann     trace_usb_xhci_run();
807f1ae32a1SGerd Hoffmann     xhci->usbsts &= ~USBSTS_HCH;
808f1ae32a1SGerd Hoffmann }
809f1ae32a1SGerd Hoffmann 
810f1ae32a1SGerd Hoffmann static void xhci_stop(XHCIState *xhci)
811f1ae32a1SGerd Hoffmann {
812fc0ddacaSGerd Hoffmann     trace_usb_xhci_stop();
813f1ae32a1SGerd Hoffmann     xhci->usbsts |= USBSTS_HCH;
814f1ae32a1SGerd Hoffmann     xhci->crcr_low &= ~CRCR_CRR;
815f1ae32a1SGerd Hoffmann }
816f1ae32a1SGerd Hoffmann 
817f1ae32a1SGerd Hoffmann static void xhci_set_ep_state(XHCIState *xhci, XHCIEPContext *epctx,
818f1ae32a1SGerd Hoffmann                               uint32_t state)
819f1ae32a1SGerd Hoffmann {
820f1ae32a1SGerd Hoffmann     uint32_t ctx[5];
821f1ae32a1SGerd Hoffmann     if (epctx->state == state) {
822f1ae32a1SGerd Hoffmann         return;
823f1ae32a1SGerd Hoffmann     }
824f1ae32a1SGerd Hoffmann 
82559a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, epctx->pctx, ctx, sizeof(ctx));
826f1ae32a1SGerd Hoffmann     ctx[0] &= ~EP_STATE_MASK;
827f1ae32a1SGerd Hoffmann     ctx[0] |= state;
828f1ae32a1SGerd Hoffmann     ctx[2] = epctx->ring.dequeue | epctx->ring.ccs;
829f1ae32a1SGerd Hoffmann     ctx[3] = (epctx->ring.dequeue >> 16) >> 16;
83059a70ccdSDavid Gibson     DPRINTF("xhci: set epctx: " DMA_ADDR_FMT " state=%d dequeue=%08x%08x\n",
831f1ae32a1SGerd Hoffmann             epctx->pctx, state, ctx[3], ctx[2]);
83259a70ccdSDavid Gibson     pci_dma_write(&xhci->pci_dev, epctx->pctx, ctx, sizeof(ctx));
833f1ae32a1SGerd Hoffmann     epctx->state = state;
834f1ae32a1SGerd Hoffmann }
835f1ae32a1SGerd Hoffmann 
836f1ae32a1SGerd Hoffmann static TRBCCode xhci_enable_ep(XHCIState *xhci, unsigned int slotid,
83759a70ccdSDavid Gibson                                unsigned int epid, dma_addr_t pctx,
838f1ae32a1SGerd Hoffmann                                uint32_t *ctx)
839f1ae32a1SGerd Hoffmann {
840f1ae32a1SGerd Hoffmann     XHCISlot *slot;
841f1ae32a1SGerd Hoffmann     XHCIEPContext *epctx;
84259a70ccdSDavid Gibson     dma_addr_t dequeue;
843f1ae32a1SGerd Hoffmann     int i;
844f1ae32a1SGerd Hoffmann 
845*c1f6b493SGerd Hoffmann     trace_usb_xhci_ep_enable(slotid, epid);
846f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
847f1ae32a1SGerd Hoffmann     assert(epid >= 1 && epid <= 31);
848f1ae32a1SGerd Hoffmann 
849f1ae32a1SGerd Hoffmann     slot = &xhci->slots[slotid-1];
850f1ae32a1SGerd Hoffmann     if (slot->eps[epid-1]) {
851f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: slot %d ep %d already enabled!\n", slotid, epid);
852f1ae32a1SGerd Hoffmann         return CC_TRB_ERROR;
853f1ae32a1SGerd Hoffmann     }
854f1ae32a1SGerd Hoffmann 
855f1ae32a1SGerd Hoffmann     epctx = g_malloc(sizeof(XHCIEPContext));
856f1ae32a1SGerd Hoffmann     memset(epctx, 0, sizeof(XHCIEPContext));
857f1ae32a1SGerd Hoffmann 
858f1ae32a1SGerd Hoffmann     slot->eps[epid-1] = epctx;
859f1ae32a1SGerd Hoffmann 
860f1ae32a1SGerd Hoffmann     dequeue = xhci_addr64(ctx[2] & ~0xf, ctx[3]);
861f1ae32a1SGerd Hoffmann     xhci_ring_init(xhci, &epctx->ring, dequeue);
862f1ae32a1SGerd Hoffmann     epctx->ring.ccs = ctx[2] & 1;
863f1ae32a1SGerd Hoffmann 
864f1ae32a1SGerd Hoffmann     epctx->type = (ctx[1] >> EP_TYPE_SHIFT) & EP_TYPE_MASK;
865f1ae32a1SGerd Hoffmann     DPRINTF("xhci: endpoint %d.%d type is %d\n", epid/2, epid%2, epctx->type);
866f1ae32a1SGerd Hoffmann     epctx->pctx = pctx;
867f1ae32a1SGerd Hoffmann     epctx->max_psize = ctx[1]>>16;
868f1ae32a1SGerd Hoffmann     epctx->max_psize *= 1+((ctx[1]>>8)&0xff);
869f1ae32a1SGerd Hoffmann     epctx->has_bg = false;
870f1ae32a1SGerd Hoffmann     if (epctx->type == ET_ISO_IN) {
871f1ae32a1SGerd Hoffmann         epctx->has_bg = true;
872f1ae32a1SGerd Hoffmann     }
873f1ae32a1SGerd Hoffmann     DPRINTF("xhci: endpoint %d.%d max transaction (burst) size is %d\n",
874f1ae32a1SGerd Hoffmann             epid/2, epid%2, epctx->max_psize);
875f1ae32a1SGerd Hoffmann     for (i = 0; i < ARRAY_SIZE(epctx->transfers); i++) {
876f1ae32a1SGerd Hoffmann         usb_packet_init(&epctx->transfers[i].packet);
877f1ae32a1SGerd Hoffmann     }
878f1ae32a1SGerd Hoffmann 
879f1ae32a1SGerd Hoffmann     epctx->state = EP_RUNNING;
880f1ae32a1SGerd Hoffmann     ctx[0] &= ~EP_STATE_MASK;
881f1ae32a1SGerd Hoffmann     ctx[0] |= EP_RUNNING;
882f1ae32a1SGerd Hoffmann 
883f1ae32a1SGerd Hoffmann     return CC_SUCCESS;
884f1ae32a1SGerd Hoffmann }
885f1ae32a1SGerd Hoffmann 
886f1ae32a1SGerd Hoffmann static int xhci_ep_nuke_xfers(XHCIState *xhci, unsigned int slotid,
887f1ae32a1SGerd Hoffmann                                unsigned int epid)
888f1ae32a1SGerd Hoffmann {
889f1ae32a1SGerd Hoffmann     XHCISlot *slot;
890f1ae32a1SGerd Hoffmann     XHCIEPContext *epctx;
891f1ae32a1SGerd Hoffmann     int i, xferi, killed = 0;
892f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
893f1ae32a1SGerd Hoffmann     assert(epid >= 1 && epid <= 31);
894f1ae32a1SGerd Hoffmann 
895f1ae32a1SGerd Hoffmann     DPRINTF("xhci_ep_nuke_xfers(%d, %d)\n", slotid, epid);
896f1ae32a1SGerd Hoffmann 
897f1ae32a1SGerd Hoffmann     slot = &xhci->slots[slotid-1];
898f1ae32a1SGerd Hoffmann 
899f1ae32a1SGerd Hoffmann     if (!slot->eps[epid-1]) {
900f1ae32a1SGerd Hoffmann         return 0;
901f1ae32a1SGerd Hoffmann     }
902f1ae32a1SGerd Hoffmann 
903f1ae32a1SGerd Hoffmann     epctx = slot->eps[epid-1];
904f1ae32a1SGerd Hoffmann 
905f1ae32a1SGerd Hoffmann     xferi = epctx->next_xfer;
906f1ae32a1SGerd Hoffmann     for (i = 0; i < TD_QUEUE; i++) {
907f1ae32a1SGerd Hoffmann         XHCITransfer *t = &epctx->transfers[xferi];
908f1ae32a1SGerd Hoffmann         if (t->running_async) {
909f1ae32a1SGerd Hoffmann             usb_cancel_packet(&t->packet);
910f1ae32a1SGerd Hoffmann             t->running_async = 0;
911f1ae32a1SGerd Hoffmann             t->cancelled = 1;
912f1ae32a1SGerd Hoffmann             DPRINTF("xhci: cancelling transfer %d, waiting for it to complete...\n", i);
913f1ae32a1SGerd Hoffmann             killed++;
914f1ae32a1SGerd Hoffmann         }
915f1ae32a1SGerd Hoffmann         if (t->running_retry) {
916f1ae32a1SGerd Hoffmann             t->running_retry = 0;
917f1ae32a1SGerd Hoffmann             epctx->retry = NULL;
918f1ae32a1SGerd Hoffmann         }
919f1ae32a1SGerd Hoffmann         if (t->backgrounded) {
920f1ae32a1SGerd Hoffmann             t->backgrounded = 0;
921f1ae32a1SGerd Hoffmann         }
922f1ae32a1SGerd Hoffmann         if (t->trbs) {
923f1ae32a1SGerd Hoffmann             g_free(t->trbs);
924f1ae32a1SGerd Hoffmann         }
925f1ae32a1SGerd Hoffmann         if (t->data) {
926f1ae32a1SGerd Hoffmann             g_free(t->data);
927f1ae32a1SGerd Hoffmann         }
928f1ae32a1SGerd Hoffmann 
929f1ae32a1SGerd Hoffmann         t->trbs = NULL;
930f1ae32a1SGerd Hoffmann         t->data = NULL;
931f1ae32a1SGerd Hoffmann         t->trb_count = t->trb_alloced = 0;
932f1ae32a1SGerd Hoffmann         t->data_length = t->data_alloced = 0;
933f1ae32a1SGerd Hoffmann         xferi = (xferi + 1) % TD_QUEUE;
934f1ae32a1SGerd Hoffmann     }
935f1ae32a1SGerd Hoffmann     if (epctx->has_bg) {
936f1ae32a1SGerd Hoffmann         xferi = epctx->next_bg;
937f1ae32a1SGerd Hoffmann         for (i = 0; i < BG_XFERS; i++) {
938f1ae32a1SGerd Hoffmann             XHCITransfer *t = &epctx->bg_transfers[xferi];
939f1ae32a1SGerd Hoffmann             if (t->running_async) {
940f1ae32a1SGerd Hoffmann                 usb_cancel_packet(&t->packet);
941f1ae32a1SGerd Hoffmann                 t->running_async = 0;
942f1ae32a1SGerd Hoffmann                 t->cancelled = 1;
943f1ae32a1SGerd Hoffmann                 DPRINTF("xhci: cancelling bg transfer %d, waiting for it to complete...\n", i);
944f1ae32a1SGerd Hoffmann                 killed++;
945f1ae32a1SGerd Hoffmann             }
946f1ae32a1SGerd Hoffmann             if (t->data) {
947f1ae32a1SGerd Hoffmann                 g_free(t->data);
948f1ae32a1SGerd Hoffmann             }
949f1ae32a1SGerd Hoffmann 
950f1ae32a1SGerd Hoffmann             t->data = NULL;
951f1ae32a1SGerd Hoffmann             xferi = (xferi + 1) % BG_XFERS;
952f1ae32a1SGerd Hoffmann         }
953f1ae32a1SGerd Hoffmann     }
954f1ae32a1SGerd Hoffmann     return killed;
955f1ae32a1SGerd Hoffmann }
956f1ae32a1SGerd Hoffmann 
957f1ae32a1SGerd Hoffmann static TRBCCode xhci_disable_ep(XHCIState *xhci, unsigned int slotid,
958f1ae32a1SGerd Hoffmann                                unsigned int epid)
959f1ae32a1SGerd Hoffmann {
960f1ae32a1SGerd Hoffmann     XHCISlot *slot;
961f1ae32a1SGerd Hoffmann     XHCIEPContext *epctx;
962f1ae32a1SGerd Hoffmann 
963*c1f6b493SGerd Hoffmann     trace_usb_xhci_ep_disable(slotid, epid);
964f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
965f1ae32a1SGerd Hoffmann     assert(epid >= 1 && epid <= 31);
966f1ae32a1SGerd Hoffmann 
967f1ae32a1SGerd Hoffmann     slot = &xhci->slots[slotid-1];
968f1ae32a1SGerd Hoffmann 
969f1ae32a1SGerd Hoffmann     if (!slot->eps[epid-1]) {
970f1ae32a1SGerd Hoffmann         DPRINTF("xhci: slot %d ep %d already disabled\n", slotid, epid);
971f1ae32a1SGerd Hoffmann         return CC_SUCCESS;
972f1ae32a1SGerd Hoffmann     }
973f1ae32a1SGerd Hoffmann 
974f1ae32a1SGerd Hoffmann     xhci_ep_nuke_xfers(xhci, slotid, epid);
975f1ae32a1SGerd Hoffmann 
976f1ae32a1SGerd Hoffmann     epctx = slot->eps[epid-1];
977f1ae32a1SGerd Hoffmann 
978f1ae32a1SGerd Hoffmann     xhci_set_ep_state(xhci, epctx, EP_DISABLED);
979f1ae32a1SGerd Hoffmann 
980f1ae32a1SGerd Hoffmann     g_free(epctx);
981f1ae32a1SGerd Hoffmann     slot->eps[epid-1] = NULL;
982f1ae32a1SGerd Hoffmann 
983f1ae32a1SGerd Hoffmann     return CC_SUCCESS;
984f1ae32a1SGerd Hoffmann }
985f1ae32a1SGerd Hoffmann 
986f1ae32a1SGerd Hoffmann static TRBCCode xhci_stop_ep(XHCIState *xhci, unsigned int slotid,
987f1ae32a1SGerd Hoffmann                              unsigned int epid)
988f1ae32a1SGerd Hoffmann {
989f1ae32a1SGerd Hoffmann     XHCISlot *slot;
990f1ae32a1SGerd Hoffmann     XHCIEPContext *epctx;
991f1ae32a1SGerd Hoffmann 
992*c1f6b493SGerd Hoffmann     trace_usb_xhci_ep_stop(slotid, epid);
993f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
994f1ae32a1SGerd Hoffmann 
995f1ae32a1SGerd Hoffmann     if (epid < 1 || epid > 31) {
996f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: bad ep %d\n", epid);
997f1ae32a1SGerd Hoffmann         return CC_TRB_ERROR;
998f1ae32a1SGerd Hoffmann     }
999f1ae32a1SGerd Hoffmann 
1000f1ae32a1SGerd Hoffmann     slot = &xhci->slots[slotid-1];
1001f1ae32a1SGerd Hoffmann 
1002f1ae32a1SGerd Hoffmann     if (!slot->eps[epid-1]) {
1003f1ae32a1SGerd Hoffmann         DPRINTF("xhci: slot %d ep %d not enabled\n", slotid, epid);
1004f1ae32a1SGerd Hoffmann         return CC_EP_NOT_ENABLED_ERROR;
1005f1ae32a1SGerd Hoffmann     }
1006f1ae32a1SGerd Hoffmann 
1007f1ae32a1SGerd Hoffmann     if (xhci_ep_nuke_xfers(xhci, slotid, epid) > 0) {
1008f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: FIXME: endpoint stopped w/ xfers running, "
1009f1ae32a1SGerd Hoffmann                 "data might be lost\n");
1010f1ae32a1SGerd Hoffmann     }
1011f1ae32a1SGerd Hoffmann 
1012f1ae32a1SGerd Hoffmann     epctx = slot->eps[epid-1];
1013f1ae32a1SGerd Hoffmann 
1014f1ae32a1SGerd Hoffmann     xhci_set_ep_state(xhci, epctx, EP_STOPPED);
1015f1ae32a1SGerd Hoffmann 
1016f1ae32a1SGerd Hoffmann     return CC_SUCCESS;
1017f1ae32a1SGerd Hoffmann }
1018f1ae32a1SGerd Hoffmann 
1019f1ae32a1SGerd Hoffmann static TRBCCode xhci_reset_ep(XHCIState *xhci, unsigned int slotid,
1020f1ae32a1SGerd Hoffmann                               unsigned int epid)
1021f1ae32a1SGerd Hoffmann {
1022f1ae32a1SGerd Hoffmann     XHCISlot *slot;
1023f1ae32a1SGerd Hoffmann     XHCIEPContext *epctx;
1024f1ae32a1SGerd Hoffmann     USBDevice *dev;
1025f1ae32a1SGerd Hoffmann 
1026*c1f6b493SGerd Hoffmann     trace_usb_xhci_ep_reset(slotid, epid);
1027f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
1028f1ae32a1SGerd Hoffmann 
1029f1ae32a1SGerd Hoffmann     if (epid < 1 || epid > 31) {
1030f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: bad ep %d\n", epid);
1031f1ae32a1SGerd Hoffmann         return CC_TRB_ERROR;
1032f1ae32a1SGerd Hoffmann     }
1033f1ae32a1SGerd Hoffmann 
1034f1ae32a1SGerd Hoffmann     slot = &xhci->slots[slotid-1];
1035f1ae32a1SGerd Hoffmann 
1036f1ae32a1SGerd Hoffmann     if (!slot->eps[epid-1]) {
1037f1ae32a1SGerd Hoffmann         DPRINTF("xhci: slot %d ep %d not enabled\n", slotid, epid);
1038f1ae32a1SGerd Hoffmann         return CC_EP_NOT_ENABLED_ERROR;
1039f1ae32a1SGerd Hoffmann     }
1040f1ae32a1SGerd Hoffmann 
1041f1ae32a1SGerd Hoffmann     epctx = slot->eps[epid-1];
1042f1ae32a1SGerd Hoffmann 
1043f1ae32a1SGerd Hoffmann     if (epctx->state != EP_HALTED) {
1044f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: reset EP while EP %d not halted (%d)\n",
1045f1ae32a1SGerd Hoffmann                 epid, epctx->state);
1046f1ae32a1SGerd Hoffmann         return CC_CONTEXT_STATE_ERROR;
1047f1ae32a1SGerd Hoffmann     }
1048f1ae32a1SGerd Hoffmann 
1049f1ae32a1SGerd Hoffmann     if (xhci_ep_nuke_xfers(xhci, slotid, epid) > 0) {
1050f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: FIXME: endpoint reset w/ xfers running, "
1051f1ae32a1SGerd Hoffmann                 "data might be lost\n");
1052f1ae32a1SGerd Hoffmann     }
1053f1ae32a1SGerd Hoffmann 
1054f1ae32a1SGerd Hoffmann     uint8_t ep = epid>>1;
1055f1ae32a1SGerd Hoffmann 
1056f1ae32a1SGerd Hoffmann     if (epid & 1) {
1057f1ae32a1SGerd Hoffmann         ep |= 0x80;
1058f1ae32a1SGerd Hoffmann     }
1059f1ae32a1SGerd Hoffmann 
1060f1ae32a1SGerd Hoffmann     dev = xhci->ports[xhci->slots[slotid-1].port-1].port.dev;
1061f1ae32a1SGerd Hoffmann     if (!dev) {
1062f1ae32a1SGerd Hoffmann         return CC_USB_TRANSACTION_ERROR;
1063f1ae32a1SGerd Hoffmann     }
1064f1ae32a1SGerd Hoffmann 
1065f1ae32a1SGerd Hoffmann     xhci_set_ep_state(xhci, epctx, EP_STOPPED);
1066f1ae32a1SGerd Hoffmann 
1067f1ae32a1SGerd Hoffmann     return CC_SUCCESS;
1068f1ae32a1SGerd Hoffmann }
1069f1ae32a1SGerd Hoffmann 
1070f1ae32a1SGerd Hoffmann static TRBCCode xhci_set_ep_dequeue(XHCIState *xhci, unsigned int slotid,
1071f1ae32a1SGerd Hoffmann                                     unsigned int epid, uint64_t pdequeue)
1072f1ae32a1SGerd Hoffmann {
1073f1ae32a1SGerd Hoffmann     XHCISlot *slot;
1074f1ae32a1SGerd Hoffmann     XHCIEPContext *epctx;
107559a70ccdSDavid Gibson     dma_addr_t dequeue;
1076f1ae32a1SGerd Hoffmann 
1077f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
1078f1ae32a1SGerd Hoffmann 
1079f1ae32a1SGerd Hoffmann     if (epid < 1 || epid > 31) {
1080f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: bad ep %d\n", epid);
1081f1ae32a1SGerd Hoffmann         return CC_TRB_ERROR;
1082f1ae32a1SGerd Hoffmann     }
1083f1ae32a1SGerd Hoffmann 
1084f1ae32a1SGerd Hoffmann     DPRINTF("xhci_set_ep_dequeue(%d, %d, %016"PRIx64")\n", slotid, epid, pdequeue);
1085f1ae32a1SGerd Hoffmann     dequeue = xhci_mask64(pdequeue);
1086f1ae32a1SGerd Hoffmann 
1087f1ae32a1SGerd Hoffmann     slot = &xhci->slots[slotid-1];
1088f1ae32a1SGerd Hoffmann 
1089f1ae32a1SGerd Hoffmann     if (!slot->eps[epid-1]) {
1090f1ae32a1SGerd Hoffmann         DPRINTF("xhci: slot %d ep %d not enabled\n", slotid, epid);
1091f1ae32a1SGerd Hoffmann         return CC_EP_NOT_ENABLED_ERROR;
1092f1ae32a1SGerd Hoffmann     }
1093f1ae32a1SGerd Hoffmann 
1094f1ae32a1SGerd Hoffmann     epctx = slot->eps[epid-1];
1095f1ae32a1SGerd Hoffmann 
1096f1ae32a1SGerd Hoffmann 
1097f1ae32a1SGerd Hoffmann     if (epctx->state != EP_STOPPED) {
1098f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: set EP dequeue pointer while EP %d not stopped\n", epid);
1099f1ae32a1SGerd Hoffmann         return CC_CONTEXT_STATE_ERROR;
1100f1ae32a1SGerd Hoffmann     }
1101f1ae32a1SGerd Hoffmann 
1102f1ae32a1SGerd Hoffmann     xhci_ring_init(xhci, &epctx->ring, dequeue & ~0xF);
1103f1ae32a1SGerd Hoffmann     epctx->ring.ccs = dequeue & 1;
1104f1ae32a1SGerd Hoffmann 
1105f1ae32a1SGerd Hoffmann     xhci_set_ep_state(xhci, epctx, EP_STOPPED);
1106f1ae32a1SGerd Hoffmann 
1107f1ae32a1SGerd Hoffmann     return CC_SUCCESS;
1108f1ae32a1SGerd Hoffmann }
1109f1ae32a1SGerd Hoffmann 
1110f1ae32a1SGerd Hoffmann static int xhci_xfer_data(XHCITransfer *xfer, uint8_t *data,
1111f1ae32a1SGerd Hoffmann                           unsigned int length, bool in_xfer, bool out_xfer,
1112f1ae32a1SGerd Hoffmann                           bool report)
1113f1ae32a1SGerd Hoffmann {
1114f1ae32a1SGerd Hoffmann     int i;
1115f1ae32a1SGerd Hoffmann     uint32_t edtla = 0;
1116f1ae32a1SGerd Hoffmann     unsigned int transferred = 0;
1117f1ae32a1SGerd Hoffmann     unsigned int left = length;
1118f1ae32a1SGerd Hoffmann     bool reported = 0;
1119f1ae32a1SGerd Hoffmann     bool shortpkt = 0;
1120f1ae32a1SGerd Hoffmann     XHCIEvent event = {ER_TRANSFER, CC_SUCCESS};
1121f1ae32a1SGerd Hoffmann     XHCIState *xhci = xfer->xhci;
1122f1ae32a1SGerd Hoffmann 
1123f1ae32a1SGerd Hoffmann     DPRINTF("xhci_xfer_data(len=%d, in_xfer=%d, out_xfer=%d, report=%d)\n",
1124f1ae32a1SGerd Hoffmann             length, in_xfer, out_xfer, report);
1125f1ae32a1SGerd Hoffmann 
1126f1ae32a1SGerd Hoffmann     assert(!(in_xfer && out_xfer));
1127f1ae32a1SGerd Hoffmann 
1128f1ae32a1SGerd Hoffmann     for (i = 0; i < xfer->trb_count; i++) {
1129f1ae32a1SGerd Hoffmann         XHCITRB *trb = &xfer->trbs[i];
113059a70ccdSDavid Gibson         dma_addr_t addr;
1131f1ae32a1SGerd Hoffmann         unsigned int chunk = 0;
1132f1ae32a1SGerd Hoffmann 
1133f1ae32a1SGerd Hoffmann         switch (TRB_TYPE(*trb)) {
1134f1ae32a1SGerd Hoffmann         case TR_DATA:
1135f1ae32a1SGerd Hoffmann             if ((!(trb->control & TRB_TR_DIR)) != (!in_xfer)) {
1136f1ae32a1SGerd Hoffmann                 fprintf(stderr, "xhci: data direction mismatch for TR_DATA\n");
1137f1ae32a1SGerd Hoffmann                 xhci_die(xhci);
1138f1ae32a1SGerd Hoffmann                 return transferred;
1139f1ae32a1SGerd Hoffmann             }
1140f1ae32a1SGerd Hoffmann             /* fallthrough */
1141f1ae32a1SGerd Hoffmann         case TR_NORMAL:
1142f1ae32a1SGerd Hoffmann         case TR_ISOCH:
1143f1ae32a1SGerd Hoffmann             addr = xhci_mask64(trb->parameter);
1144f1ae32a1SGerd Hoffmann             chunk = trb->status & 0x1ffff;
1145f1ae32a1SGerd Hoffmann             if (chunk > left) {
1146f1ae32a1SGerd Hoffmann                 chunk = left;
1147f1ae32a1SGerd Hoffmann                 shortpkt = 1;
1148f1ae32a1SGerd Hoffmann             }
1149f1ae32a1SGerd Hoffmann             if (in_xfer || out_xfer) {
1150f1ae32a1SGerd Hoffmann                 if (trb->control & TRB_TR_IDT) {
1151f1ae32a1SGerd Hoffmann                     uint64_t idata;
1152f1ae32a1SGerd Hoffmann                     if (chunk > 8 || in_xfer) {
1153f1ae32a1SGerd Hoffmann                         fprintf(stderr, "xhci: invalid immediate data TRB\n");
1154f1ae32a1SGerd Hoffmann                         xhci_die(xhci);
1155f1ae32a1SGerd Hoffmann                         return transferred;
1156f1ae32a1SGerd Hoffmann                     }
1157f1ae32a1SGerd Hoffmann                     idata = le64_to_cpu(trb->parameter);
1158f1ae32a1SGerd Hoffmann                     memcpy(data, &idata, chunk);
1159f1ae32a1SGerd Hoffmann                 } else {
1160f1ae32a1SGerd Hoffmann                     DPRINTF("xhci_xfer_data: r/w(%d) %d bytes at "
116159a70ccdSDavid Gibson                             DMA_ADDR_FMT "\n", in_xfer, chunk, addr);
1162f1ae32a1SGerd Hoffmann                     if (in_xfer) {
116359a70ccdSDavid Gibson                         pci_dma_write(&xhci->pci_dev, addr, data, chunk);
1164f1ae32a1SGerd Hoffmann                     } else {
116559a70ccdSDavid Gibson                         pci_dma_read(&xhci->pci_dev, addr, data, chunk);
1166f1ae32a1SGerd Hoffmann                     }
1167f1ae32a1SGerd Hoffmann #ifdef DEBUG_DATA
1168f1ae32a1SGerd Hoffmann                     unsigned int count = chunk;
1169f1ae32a1SGerd Hoffmann                     int i;
1170f1ae32a1SGerd Hoffmann                     if (count > 16) {
1171f1ae32a1SGerd Hoffmann                         count = 16;
1172f1ae32a1SGerd Hoffmann                     }
1173f1ae32a1SGerd Hoffmann                     DPRINTF(" ::");
1174f1ae32a1SGerd Hoffmann                     for (i = 0; i < count; i++) {
1175f1ae32a1SGerd Hoffmann                         DPRINTF(" %02x", data[i]);
1176f1ae32a1SGerd Hoffmann                     }
1177f1ae32a1SGerd Hoffmann                     DPRINTF("\n");
1178f1ae32a1SGerd Hoffmann #endif
1179f1ae32a1SGerd Hoffmann                 }
1180f1ae32a1SGerd Hoffmann             }
1181f1ae32a1SGerd Hoffmann             left -= chunk;
1182f1ae32a1SGerd Hoffmann             data += chunk;
1183f1ae32a1SGerd Hoffmann             edtla += chunk;
1184f1ae32a1SGerd Hoffmann             transferred += chunk;
1185f1ae32a1SGerd Hoffmann             break;
1186f1ae32a1SGerd Hoffmann         case TR_STATUS:
1187f1ae32a1SGerd Hoffmann             reported = 0;
1188f1ae32a1SGerd Hoffmann             shortpkt = 0;
1189f1ae32a1SGerd Hoffmann             break;
1190f1ae32a1SGerd Hoffmann         }
1191f1ae32a1SGerd Hoffmann 
1192f1ae32a1SGerd Hoffmann         if (report && !reported && (trb->control & TRB_TR_IOC ||
1193f1ae32a1SGerd Hoffmann             (shortpkt && (trb->control & TRB_TR_ISP)))) {
1194f1ae32a1SGerd Hoffmann             event.slotid = xfer->slotid;
1195f1ae32a1SGerd Hoffmann             event.epid = xfer->epid;
1196f1ae32a1SGerd Hoffmann             event.length = (trb->status & 0x1ffff) - chunk;
1197f1ae32a1SGerd Hoffmann             event.flags = 0;
1198f1ae32a1SGerd Hoffmann             event.ptr = trb->addr;
1199f1ae32a1SGerd Hoffmann             if (xfer->status == CC_SUCCESS) {
1200f1ae32a1SGerd Hoffmann                 event.ccode = shortpkt ? CC_SHORT_PACKET : CC_SUCCESS;
1201f1ae32a1SGerd Hoffmann             } else {
1202f1ae32a1SGerd Hoffmann                 event.ccode = xfer->status;
1203f1ae32a1SGerd Hoffmann             }
1204f1ae32a1SGerd Hoffmann             if (TRB_TYPE(*trb) == TR_EVDATA) {
1205f1ae32a1SGerd Hoffmann                 event.ptr = trb->parameter;
1206f1ae32a1SGerd Hoffmann                 event.flags |= TRB_EV_ED;
1207f1ae32a1SGerd Hoffmann                 event.length = edtla & 0xffffff;
1208f1ae32a1SGerd Hoffmann                 DPRINTF("xhci_xfer_data: EDTLA=%d\n", event.length);
1209f1ae32a1SGerd Hoffmann                 edtla = 0;
1210f1ae32a1SGerd Hoffmann             }
1211f1ae32a1SGerd Hoffmann             xhci_event(xhci, &event);
1212f1ae32a1SGerd Hoffmann             reported = 1;
1213f1ae32a1SGerd Hoffmann         }
1214f1ae32a1SGerd Hoffmann     }
1215f1ae32a1SGerd Hoffmann     return transferred;
1216f1ae32a1SGerd Hoffmann }
1217f1ae32a1SGerd Hoffmann 
1218f1ae32a1SGerd Hoffmann static void xhci_stall_ep(XHCITransfer *xfer)
1219f1ae32a1SGerd Hoffmann {
1220f1ae32a1SGerd Hoffmann     XHCIState *xhci = xfer->xhci;
1221f1ae32a1SGerd Hoffmann     XHCISlot *slot = &xhci->slots[xfer->slotid-1];
1222f1ae32a1SGerd Hoffmann     XHCIEPContext *epctx = slot->eps[xfer->epid-1];
1223f1ae32a1SGerd Hoffmann 
1224f1ae32a1SGerd Hoffmann     epctx->ring.dequeue = xfer->trbs[0].addr;
1225f1ae32a1SGerd Hoffmann     epctx->ring.ccs = xfer->trbs[0].ccs;
1226f1ae32a1SGerd Hoffmann     xhci_set_ep_state(xhci, epctx, EP_HALTED);
1227f1ae32a1SGerd Hoffmann     DPRINTF("xhci: stalled slot %d ep %d\n", xfer->slotid, xfer->epid);
122859a70ccdSDavid Gibson     DPRINTF("xhci: will continue at "DMA_ADDR_FMT"\n", epctx->ring.dequeue);
1229f1ae32a1SGerd Hoffmann }
1230f1ae32a1SGerd Hoffmann 
1231f1ae32a1SGerd Hoffmann static int xhci_submit(XHCIState *xhci, XHCITransfer *xfer,
1232f1ae32a1SGerd Hoffmann                        XHCIEPContext *epctx);
1233f1ae32a1SGerd Hoffmann 
1234f1ae32a1SGerd Hoffmann static void xhci_bg_update(XHCIState *xhci, XHCIEPContext *epctx)
1235f1ae32a1SGerd Hoffmann {
1236f1ae32a1SGerd Hoffmann     if (epctx->bg_updating) {
1237f1ae32a1SGerd Hoffmann         return;
1238f1ae32a1SGerd Hoffmann     }
1239f1ae32a1SGerd Hoffmann     DPRINTF("xhci_bg_update(%p, %p)\n", xhci, epctx);
1240f1ae32a1SGerd Hoffmann     assert(epctx->has_bg);
1241f1ae32a1SGerd Hoffmann     DPRINTF("xhci: fg=%d bg=%d\n", epctx->comp_xfer, epctx->next_bg);
1242f1ae32a1SGerd Hoffmann     epctx->bg_updating = 1;
1243f1ae32a1SGerd Hoffmann     while (epctx->transfers[epctx->comp_xfer].backgrounded &&
1244f1ae32a1SGerd Hoffmann            epctx->bg_transfers[epctx->next_bg].complete) {
1245f1ae32a1SGerd Hoffmann         XHCITransfer *fg = &epctx->transfers[epctx->comp_xfer];
1246f1ae32a1SGerd Hoffmann         XHCITransfer *bg = &epctx->bg_transfers[epctx->next_bg];
1247f1ae32a1SGerd Hoffmann #if 0
1248f1ae32a1SGerd Hoffmann         DPRINTF("xhci: completing fg %d from bg %d.%d (stat: %d)\n",
1249f1ae32a1SGerd Hoffmann                 epctx->comp_xfer, epctx->next_bg, bg->cur_pkt,
1250f1ae32a1SGerd Hoffmann                 bg->usbxfer->iso_packet_desc[bg->cur_pkt].status
1251f1ae32a1SGerd Hoffmann                );
1252f1ae32a1SGerd Hoffmann #endif
1253f1ae32a1SGerd Hoffmann         assert(epctx->type == ET_ISO_IN);
1254f1ae32a1SGerd Hoffmann         assert(bg->iso_xfer);
1255f1ae32a1SGerd Hoffmann         assert(bg->in_xfer);
1256f1ae32a1SGerd Hoffmann         uint8_t *p = bg->data + bg->cur_pkt * bg->pktsize;
1257f1ae32a1SGerd Hoffmann #if 0
1258f1ae32a1SGerd Hoffmann         int len = bg->usbxfer->iso_packet_desc[bg->cur_pkt].actual_length;
1259f1ae32a1SGerd Hoffmann         fg->status = libusb_to_ccode(bg->usbxfer->iso_packet_desc[bg->cur_pkt].status);
1260f1ae32a1SGerd Hoffmann #else
1261f1ae32a1SGerd Hoffmann         int len = 0;
1262f1ae32a1SGerd Hoffmann         FIXME();
1263f1ae32a1SGerd Hoffmann #endif
1264f1ae32a1SGerd Hoffmann         fg->complete = 1;
1265f1ae32a1SGerd Hoffmann         fg->backgrounded = 0;
1266f1ae32a1SGerd Hoffmann 
1267f1ae32a1SGerd Hoffmann         if (fg->status == CC_STALL_ERROR) {
1268f1ae32a1SGerd Hoffmann             xhci_stall_ep(fg);
1269f1ae32a1SGerd Hoffmann         }
1270f1ae32a1SGerd Hoffmann 
1271f1ae32a1SGerd Hoffmann         xhci_xfer_data(fg, p, len, 1, 0, 1);
1272f1ae32a1SGerd Hoffmann 
1273f1ae32a1SGerd Hoffmann         epctx->comp_xfer++;
1274f1ae32a1SGerd Hoffmann         if (epctx->comp_xfer == TD_QUEUE) {
1275f1ae32a1SGerd Hoffmann             epctx->comp_xfer = 0;
1276f1ae32a1SGerd Hoffmann         }
1277f1ae32a1SGerd Hoffmann         DPRINTF("next fg xfer: %d\n", epctx->comp_xfer);
1278f1ae32a1SGerd Hoffmann         bg->cur_pkt++;
1279f1ae32a1SGerd Hoffmann         if (bg->cur_pkt == bg->pkts) {
1280f1ae32a1SGerd Hoffmann             bg->complete = 0;
1281f1ae32a1SGerd Hoffmann             if (xhci_submit(xhci, bg, epctx) < 0) {
1282f1ae32a1SGerd Hoffmann                 fprintf(stderr, "xhci: bg resubmit failed\n");
1283f1ae32a1SGerd Hoffmann             }
1284f1ae32a1SGerd Hoffmann             epctx->next_bg++;
1285f1ae32a1SGerd Hoffmann             if (epctx->next_bg == BG_XFERS) {
1286f1ae32a1SGerd Hoffmann                 epctx->next_bg = 0;
1287f1ae32a1SGerd Hoffmann             }
1288f1ae32a1SGerd Hoffmann             DPRINTF("next bg xfer: %d\n", epctx->next_bg);
1289f1ae32a1SGerd Hoffmann 
1290f1ae32a1SGerd Hoffmann         xhci_kick_ep(xhci, fg->slotid, fg->epid);
1291f1ae32a1SGerd Hoffmann         }
1292f1ae32a1SGerd Hoffmann     }
1293f1ae32a1SGerd Hoffmann     epctx->bg_updating = 0;
1294f1ae32a1SGerd Hoffmann }
1295f1ae32a1SGerd Hoffmann 
1296f1ae32a1SGerd Hoffmann #if 0
1297f1ae32a1SGerd Hoffmann static void xhci_xfer_cb(struct libusb_transfer *transfer)
1298f1ae32a1SGerd Hoffmann {
1299f1ae32a1SGerd Hoffmann     XHCIState *xhci;
1300f1ae32a1SGerd Hoffmann     XHCITransfer *xfer;
1301f1ae32a1SGerd Hoffmann 
1302f1ae32a1SGerd Hoffmann     xfer = (XHCITransfer *)transfer->user_data;
1303f1ae32a1SGerd Hoffmann     xhci = xfer->xhci;
1304f1ae32a1SGerd Hoffmann 
1305f1ae32a1SGerd Hoffmann     DPRINTF("xhci_xfer_cb(slot=%d, ep=%d, status=%d)\n", xfer->slotid,
1306f1ae32a1SGerd Hoffmann             xfer->epid, transfer->status);
1307f1ae32a1SGerd Hoffmann 
1308f1ae32a1SGerd Hoffmann     assert(xfer->slotid >= 1 && xfer->slotid <= MAXSLOTS);
1309f1ae32a1SGerd Hoffmann     assert(xfer->epid >= 1 && xfer->epid <= 31);
1310f1ae32a1SGerd Hoffmann 
1311f1ae32a1SGerd Hoffmann     if (xfer->cancelled) {
1312f1ae32a1SGerd Hoffmann         DPRINTF("xhci: transfer cancelled, not reporting anything\n");
1313f1ae32a1SGerd Hoffmann         xfer->running = 0;
1314f1ae32a1SGerd Hoffmann         return;
1315f1ae32a1SGerd Hoffmann     }
1316f1ae32a1SGerd Hoffmann 
1317f1ae32a1SGerd Hoffmann     XHCIEPContext *epctx;
1318f1ae32a1SGerd Hoffmann     XHCISlot *slot;
1319f1ae32a1SGerd Hoffmann     slot = &xhci->slots[xfer->slotid-1];
1320f1ae32a1SGerd Hoffmann     assert(slot->eps[xfer->epid-1]);
1321f1ae32a1SGerd Hoffmann     epctx = slot->eps[xfer->epid-1];
1322f1ae32a1SGerd Hoffmann 
1323f1ae32a1SGerd Hoffmann     if (xfer->bg_xfer) {
1324f1ae32a1SGerd Hoffmann         DPRINTF("xhci: background transfer, updating\n");
1325f1ae32a1SGerd Hoffmann         xfer->complete = 1;
1326f1ae32a1SGerd Hoffmann         xfer->running = 0;
1327f1ae32a1SGerd Hoffmann         xhci_bg_update(xhci, epctx);
1328f1ae32a1SGerd Hoffmann         return;
1329f1ae32a1SGerd Hoffmann     }
1330f1ae32a1SGerd Hoffmann 
1331f1ae32a1SGerd Hoffmann     if (xfer->iso_xfer) {
1332f1ae32a1SGerd Hoffmann         transfer->status = transfer->iso_packet_desc[0].status;
1333f1ae32a1SGerd Hoffmann         transfer->actual_length = transfer->iso_packet_desc[0].actual_length;
1334f1ae32a1SGerd Hoffmann     }
1335f1ae32a1SGerd Hoffmann 
1336f1ae32a1SGerd Hoffmann     xfer->status = libusb_to_ccode(transfer->status);
1337f1ae32a1SGerd Hoffmann 
1338f1ae32a1SGerd Hoffmann     xfer->complete = 1;
1339f1ae32a1SGerd Hoffmann     xfer->running = 0;
1340f1ae32a1SGerd Hoffmann 
1341f1ae32a1SGerd Hoffmann     if (transfer->status == LIBUSB_TRANSFER_STALL)
1342f1ae32a1SGerd Hoffmann         xhci_stall_ep(xhci, epctx, xfer);
1343f1ae32a1SGerd Hoffmann 
1344f1ae32a1SGerd Hoffmann     DPRINTF("xhci: transfer actual length = %d\n", transfer->actual_length);
1345f1ae32a1SGerd Hoffmann 
1346f1ae32a1SGerd Hoffmann     if (xfer->in_xfer) {
1347f1ae32a1SGerd Hoffmann         if (xfer->epid == 1) {
1348f1ae32a1SGerd Hoffmann             xhci_xfer_data(xhci, xfer, xfer->data + 8,
1349f1ae32a1SGerd Hoffmann                            transfer->actual_length, 1, 0, 1);
1350f1ae32a1SGerd Hoffmann         } else {
1351f1ae32a1SGerd Hoffmann             xhci_xfer_data(xhci, xfer, xfer->data,
1352f1ae32a1SGerd Hoffmann                            transfer->actual_length, 1, 0, 1);
1353f1ae32a1SGerd Hoffmann         }
1354f1ae32a1SGerd Hoffmann     } else {
1355f1ae32a1SGerd Hoffmann         xhci_xfer_data(xhci, xfer, NULL, transfer->actual_length, 0, 0, 1);
1356f1ae32a1SGerd Hoffmann     }
1357f1ae32a1SGerd Hoffmann 
1358f1ae32a1SGerd Hoffmann     xhci_kick_ep(xhci, xfer->slotid, xfer->epid);
1359f1ae32a1SGerd Hoffmann }
1360f1ae32a1SGerd Hoffmann 
1361f1ae32a1SGerd Hoffmann static int xhci_hle_control(XHCIState *xhci, XHCITransfer *xfer,
1362f1ae32a1SGerd Hoffmann                             uint8_t bmRequestType, uint8_t bRequest,
1363f1ae32a1SGerd Hoffmann                             uint16_t wValue, uint16_t wIndex, uint16_t wLength)
1364f1ae32a1SGerd Hoffmann {
1365f1ae32a1SGerd Hoffmann     uint16_t type_req = (bmRequestType << 8) | bRequest;
1366f1ae32a1SGerd Hoffmann 
1367f1ae32a1SGerd Hoffmann     switch (type_req) {
1368f1ae32a1SGerd Hoffmann         case 0x0000 | USB_REQ_SET_CONFIGURATION:
1369f1ae32a1SGerd Hoffmann             DPRINTF("xhci: HLE switch configuration\n");
1370f1ae32a1SGerd Hoffmann             return xhci_switch_config(xhci, xfer->slotid, wValue) == 0;
1371f1ae32a1SGerd Hoffmann         case 0x0100 | USB_REQ_SET_INTERFACE:
1372f1ae32a1SGerd Hoffmann             DPRINTF("xhci: HLE set interface altsetting\n");
1373f1ae32a1SGerd Hoffmann             return xhci_set_iface_alt(xhci, xfer->slotid, wIndex, wValue) == 0;
1374f1ae32a1SGerd Hoffmann         case 0x0200 | USB_REQ_CLEAR_FEATURE:
1375f1ae32a1SGerd Hoffmann             if (wValue == 0) { // endpoint halt
1376f1ae32a1SGerd Hoffmann                 DPRINTF("xhci: HLE clear halt\n");
1377f1ae32a1SGerd Hoffmann                 return xhci_clear_halt(xhci, xfer->slotid, wIndex);
1378f1ae32a1SGerd Hoffmann             }
1379f1ae32a1SGerd Hoffmann         case 0x0000 | USB_REQ_SET_ADDRESS:
1380f1ae32a1SGerd Hoffmann             fprintf(stderr, "xhci: warn: illegal SET_ADDRESS request\n");
1381f1ae32a1SGerd Hoffmann             return 0;
1382f1ae32a1SGerd Hoffmann         default:
1383f1ae32a1SGerd Hoffmann             return 0;
1384f1ae32a1SGerd Hoffmann     }
1385f1ae32a1SGerd Hoffmann }
1386f1ae32a1SGerd Hoffmann #endif
1387f1ae32a1SGerd Hoffmann 
1388f1ae32a1SGerd Hoffmann static int xhci_setup_packet(XHCITransfer *xfer, USBDevice *dev)
1389f1ae32a1SGerd Hoffmann {
1390f1ae32a1SGerd Hoffmann     USBEndpoint *ep;
1391f1ae32a1SGerd Hoffmann     int dir;
1392f1ae32a1SGerd Hoffmann 
1393f1ae32a1SGerd Hoffmann     dir = xfer->in_xfer ? USB_TOKEN_IN : USB_TOKEN_OUT;
1394f1ae32a1SGerd Hoffmann     ep = usb_ep_get(dev, dir, xfer->epid >> 1);
1395f1ae32a1SGerd Hoffmann     usb_packet_setup(&xfer->packet, dir, ep);
1396f1ae32a1SGerd Hoffmann     usb_packet_addbuf(&xfer->packet, xfer->data, xfer->data_length);
1397f1ae32a1SGerd Hoffmann     DPRINTF("xhci: setup packet pid 0x%x addr %d ep %d\n",
1398f1ae32a1SGerd Hoffmann             xfer->packet.pid, dev->addr, ep->nr);
1399f1ae32a1SGerd Hoffmann     return 0;
1400f1ae32a1SGerd Hoffmann }
1401f1ae32a1SGerd Hoffmann 
1402f1ae32a1SGerd Hoffmann static int xhci_complete_packet(XHCITransfer *xfer, int ret)
1403f1ae32a1SGerd Hoffmann {
1404f1ae32a1SGerd Hoffmann     if (ret == USB_RET_ASYNC) {
1405f1ae32a1SGerd Hoffmann         xfer->running_async = 1;
1406f1ae32a1SGerd Hoffmann         xfer->running_retry = 0;
1407f1ae32a1SGerd Hoffmann         xfer->complete = 0;
1408f1ae32a1SGerd Hoffmann         xfer->cancelled = 0;
1409f1ae32a1SGerd Hoffmann         return 0;
1410f1ae32a1SGerd Hoffmann     } else if (ret == USB_RET_NAK) {
1411f1ae32a1SGerd Hoffmann         xfer->running_async = 0;
1412f1ae32a1SGerd Hoffmann         xfer->running_retry = 1;
1413f1ae32a1SGerd Hoffmann         xfer->complete = 0;
1414f1ae32a1SGerd Hoffmann         xfer->cancelled = 0;
1415f1ae32a1SGerd Hoffmann         return 0;
1416f1ae32a1SGerd Hoffmann     } else {
1417f1ae32a1SGerd Hoffmann         xfer->running_async = 0;
1418f1ae32a1SGerd Hoffmann         xfer->running_retry = 0;
1419f1ae32a1SGerd Hoffmann         xfer->complete = 1;
1420f1ae32a1SGerd Hoffmann     }
1421f1ae32a1SGerd Hoffmann 
1422f1ae32a1SGerd Hoffmann     if (ret >= 0) {
1423f1ae32a1SGerd Hoffmann         xfer->status = CC_SUCCESS;
1424f1ae32a1SGerd Hoffmann         xhci_xfer_data(xfer, xfer->data, ret, xfer->in_xfer, 0, 1);
1425f1ae32a1SGerd Hoffmann         return 0;
1426f1ae32a1SGerd Hoffmann     }
1427f1ae32a1SGerd Hoffmann 
1428f1ae32a1SGerd Hoffmann     /* error */
1429f1ae32a1SGerd Hoffmann     switch (ret) {
1430f1ae32a1SGerd Hoffmann     case USB_RET_NODEV:
1431f1ae32a1SGerd Hoffmann         xfer->status = CC_USB_TRANSACTION_ERROR;
1432f1ae32a1SGerd Hoffmann         xhci_xfer_data(xfer, xfer->data, 0, xfer->in_xfer, 0, 1);
1433f1ae32a1SGerd Hoffmann         xhci_stall_ep(xfer);
1434f1ae32a1SGerd Hoffmann         break;
1435f1ae32a1SGerd Hoffmann     case USB_RET_STALL:
1436f1ae32a1SGerd Hoffmann         xfer->status = CC_STALL_ERROR;
1437f1ae32a1SGerd Hoffmann         xhci_xfer_data(xfer, xfer->data, 0, xfer->in_xfer, 0, 1);
1438f1ae32a1SGerd Hoffmann         xhci_stall_ep(xfer);
1439f1ae32a1SGerd Hoffmann         break;
1440f1ae32a1SGerd Hoffmann     default:
1441f1ae32a1SGerd Hoffmann         fprintf(stderr, "%s: FIXME: ret = %d\n", __FUNCTION__, ret);
1442f1ae32a1SGerd Hoffmann         FIXME();
1443f1ae32a1SGerd Hoffmann     }
1444f1ae32a1SGerd Hoffmann     return 0;
1445f1ae32a1SGerd Hoffmann }
1446f1ae32a1SGerd Hoffmann 
1447f1ae32a1SGerd Hoffmann static USBDevice *xhci_find_device(XHCIPort *port, uint8_t addr)
1448f1ae32a1SGerd Hoffmann {
1449f1ae32a1SGerd Hoffmann     if (!(port->portsc & PORTSC_PED)) {
1450f1ae32a1SGerd Hoffmann         return NULL;
1451f1ae32a1SGerd Hoffmann     }
1452f1ae32a1SGerd Hoffmann     return usb_find_device(&port->port, addr);
1453f1ae32a1SGerd Hoffmann }
1454f1ae32a1SGerd Hoffmann 
1455f1ae32a1SGerd Hoffmann static int xhci_fire_ctl_transfer(XHCIState *xhci, XHCITransfer *xfer)
1456f1ae32a1SGerd Hoffmann {
1457f1ae32a1SGerd Hoffmann     XHCITRB *trb_setup, *trb_status;
1458f1ae32a1SGerd Hoffmann     uint8_t bmRequestType;
1459f1ae32a1SGerd Hoffmann     uint16_t wLength;
1460f1ae32a1SGerd Hoffmann     XHCIPort *port;
1461f1ae32a1SGerd Hoffmann     USBDevice *dev;
1462f1ae32a1SGerd Hoffmann     int ret;
1463f1ae32a1SGerd Hoffmann 
1464f1ae32a1SGerd Hoffmann     DPRINTF("xhci_fire_ctl_transfer(slot=%d)\n", xfer->slotid);
1465f1ae32a1SGerd Hoffmann 
1466f1ae32a1SGerd Hoffmann     trb_setup = &xfer->trbs[0];
1467f1ae32a1SGerd Hoffmann     trb_status = &xfer->trbs[xfer->trb_count-1];
1468f1ae32a1SGerd Hoffmann 
1469f1ae32a1SGerd Hoffmann     /* at most one Event Data TRB allowed after STATUS */
1470f1ae32a1SGerd Hoffmann     if (TRB_TYPE(*trb_status) == TR_EVDATA && xfer->trb_count > 2) {
1471f1ae32a1SGerd Hoffmann         trb_status--;
1472f1ae32a1SGerd Hoffmann     }
1473f1ae32a1SGerd Hoffmann 
1474f1ae32a1SGerd Hoffmann     /* do some sanity checks */
1475f1ae32a1SGerd Hoffmann     if (TRB_TYPE(*trb_setup) != TR_SETUP) {
1476f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: ep0 first TD not SETUP: %d\n",
1477f1ae32a1SGerd Hoffmann                 TRB_TYPE(*trb_setup));
1478f1ae32a1SGerd Hoffmann         return -1;
1479f1ae32a1SGerd Hoffmann     }
1480f1ae32a1SGerd Hoffmann     if (TRB_TYPE(*trb_status) != TR_STATUS) {
1481f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: ep0 last TD not STATUS: %d\n",
1482f1ae32a1SGerd Hoffmann                 TRB_TYPE(*trb_status));
1483f1ae32a1SGerd Hoffmann         return -1;
1484f1ae32a1SGerd Hoffmann     }
1485f1ae32a1SGerd Hoffmann     if (!(trb_setup->control & TRB_TR_IDT)) {
1486f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: Setup TRB doesn't have IDT set\n");
1487f1ae32a1SGerd Hoffmann         return -1;
1488f1ae32a1SGerd Hoffmann     }
1489f1ae32a1SGerd Hoffmann     if ((trb_setup->status & 0x1ffff) != 8) {
1490f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: Setup TRB has bad length (%d)\n",
1491f1ae32a1SGerd Hoffmann                 (trb_setup->status & 0x1ffff));
1492f1ae32a1SGerd Hoffmann         return -1;
1493f1ae32a1SGerd Hoffmann     }
1494f1ae32a1SGerd Hoffmann 
1495f1ae32a1SGerd Hoffmann     bmRequestType = trb_setup->parameter;
1496f1ae32a1SGerd Hoffmann     wLength = trb_setup->parameter >> 48;
1497f1ae32a1SGerd Hoffmann 
1498f1ae32a1SGerd Hoffmann     if (xfer->data && xfer->data_alloced < wLength) {
1499f1ae32a1SGerd Hoffmann         xfer->data_alloced = 0;
1500f1ae32a1SGerd Hoffmann         g_free(xfer->data);
1501f1ae32a1SGerd Hoffmann         xfer->data = NULL;
1502f1ae32a1SGerd Hoffmann     }
1503f1ae32a1SGerd Hoffmann     if (!xfer->data) {
1504f1ae32a1SGerd Hoffmann         DPRINTF("xhci: alloc %d bytes data\n", wLength);
1505f1ae32a1SGerd Hoffmann         xfer->data = g_malloc(wLength+1);
1506f1ae32a1SGerd Hoffmann         xfer->data_alloced = wLength;
1507f1ae32a1SGerd Hoffmann     }
1508f1ae32a1SGerd Hoffmann     xfer->data_length = wLength;
1509f1ae32a1SGerd Hoffmann 
1510f1ae32a1SGerd Hoffmann     port = &xhci->ports[xhci->slots[xfer->slotid-1].port-1];
1511f1ae32a1SGerd Hoffmann     dev = xhci_find_device(port, xhci->slots[xfer->slotid-1].devaddr);
1512f1ae32a1SGerd Hoffmann     if (!dev) {
1513f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: slot %d port %d has no device\n", xfer->slotid,
1514f1ae32a1SGerd Hoffmann                 xhci->slots[xfer->slotid-1].port);
1515f1ae32a1SGerd Hoffmann         return -1;
1516f1ae32a1SGerd Hoffmann     }
1517f1ae32a1SGerd Hoffmann 
1518f1ae32a1SGerd Hoffmann     xfer->in_xfer = bmRequestType & USB_DIR_IN;
1519f1ae32a1SGerd Hoffmann     xfer->iso_xfer = false;
1520f1ae32a1SGerd Hoffmann 
1521f1ae32a1SGerd Hoffmann     xhci_setup_packet(xfer, dev);
1522f1ae32a1SGerd Hoffmann     xfer->packet.parameter = trb_setup->parameter;
1523f1ae32a1SGerd Hoffmann     if (!xfer->in_xfer) {
1524f1ae32a1SGerd Hoffmann         xhci_xfer_data(xfer, xfer->data, wLength, 0, 1, 0);
1525f1ae32a1SGerd Hoffmann     }
1526f1ae32a1SGerd Hoffmann 
1527f1ae32a1SGerd Hoffmann     ret = usb_handle_packet(dev, &xfer->packet);
1528f1ae32a1SGerd Hoffmann 
1529f1ae32a1SGerd Hoffmann     xhci_complete_packet(xfer, ret);
1530f1ae32a1SGerd Hoffmann     if (!xfer->running_async && !xfer->running_retry) {
1531f1ae32a1SGerd Hoffmann         xhci_kick_ep(xhci, xfer->slotid, xfer->epid);
1532f1ae32a1SGerd Hoffmann     }
1533f1ae32a1SGerd Hoffmann     return 0;
1534f1ae32a1SGerd Hoffmann }
1535f1ae32a1SGerd Hoffmann 
1536f1ae32a1SGerd Hoffmann static int xhci_submit(XHCIState *xhci, XHCITransfer *xfer, XHCIEPContext *epctx)
1537f1ae32a1SGerd Hoffmann {
1538f1ae32a1SGerd Hoffmann     XHCIPort *port;
1539f1ae32a1SGerd Hoffmann     USBDevice *dev;
1540f1ae32a1SGerd Hoffmann     int ret;
1541f1ae32a1SGerd Hoffmann 
1542f1ae32a1SGerd Hoffmann     DPRINTF("xhci_submit(slotid=%d,epid=%d)\n", xfer->slotid, xfer->epid);
1543f1ae32a1SGerd Hoffmann 
1544f1ae32a1SGerd Hoffmann     xfer->in_xfer = epctx->type>>2;
1545f1ae32a1SGerd Hoffmann 
1546f1ae32a1SGerd Hoffmann     if (xfer->data && xfer->data_alloced < xfer->data_length) {
1547f1ae32a1SGerd Hoffmann         xfer->data_alloced = 0;
1548f1ae32a1SGerd Hoffmann         g_free(xfer->data);
1549f1ae32a1SGerd Hoffmann         xfer->data = NULL;
1550f1ae32a1SGerd Hoffmann     }
1551f1ae32a1SGerd Hoffmann     if (!xfer->data && xfer->data_length) {
1552f1ae32a1SGerd Hoffmann         DPRINTF("xhci: alloc %d bytes data\n", xfer->data_length);
1553f1ae32a1SGerd Hoffmann         xfer->data = g_malloc(xfer->data_length);
1554f1ae32a1SGerd Hoffmann         xfer->data_alloced = xfer->data_length;
1555f1ae32a1SGerd Hoffmann     }
1556f1ae32a1SGerd Hoffmann     if (epctx->type == ET_ISO_IN || epctx->type == ET_ISO_OUT) {
1557f1ae32a1SGerd Hoffmann         if (!xfer->bg_xfer) {
1558f1ae32a1SGerd Hoffmann             xfer->pkts = 1;
1559f1ae32a1SGerd Hoffmann         }
1560f1ae32a1SGerd Hoffmann     } else {
1561f1ae32a1SGerd Hoffmann         xfer->pkts = 0;
1562f1ae32a1SGerd Hoffmann     }
1563f1ae32a1SGerd Hoffmann 
1564f1ae32a1SGerd Hoffmann     port = &xhci->ports[xhci->slots[xfer->slotid-1].port-1];
1565f1ae32a1SGerd Hoffmann     dev = xhci_find_device(port, xhci->slots[xfer->slotid-1].devaddr);
1566f1ae32a1SGerd Hoffmann     if (!dev) {
1567f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: slot %d port %d has no device\n", xfer->slotid,
1568f1ae32a1SGerd Hoffmann                 xhci->slots[xfer->slotid-1].port);
1569f1ae32a1SGerd Hoffmann         return -1;
1570f1ae32a1SGerd Hoffmann     }
1571f1ae32a1SGerd Hoffmann 
1572f1ae32a1SGerd Hoffmann     xhci_setup_packet(xfer, dev);
1573f1ae32a1SGerd Hoffmann 
1574f1ae32a1SGerd Hoffmann     switch(epctx->type) {
1575f1ae32a1SGerd Hoffmann     case ET_INTR_OUT:
1576f1ae32a1SGerd Hoffmann     case ET_INTR_IN:
1577f1ae32a1SGerd Hoffmann     case ET_BULK_OUT:
1578f1ae32a1SGerd Hoffmann     case ET_BULK_IN:
1579f1ae32a1SGerd Hoffmann         break;
1580f1ae32a1SGerd Hoffmann     case ET_ISO_OUT:
1581f1ae32a1SGerd Hoffmann     case ET_ISO_IN:
1582f1ae32a1SGerd Hoffmann         FIXME();
1583f1ae32a1SGerd Hoffmann         break;
1584f1ae32a1SGerd Hoffmann     default:
1585f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: unknown or unhandled EP "
1586f1ae32a1SGerd Hoffmann                 "(type %d, in %d, ep %02x)\n",
1587f1ae32a1SGerd Hoffmann                 epctx->type, xfer->in_xfer, xfer->epid);
1588f1ae32a1SGerd Hoffmann         return -1;
1589f1ae32a1SGerd Hoffmann     }
1590f1ae32a1SGerd Hoffmann 
1591f1ae32a1SGerd Hoffmann     if (!xfer->in_xfer) {
1592f1ae32a1SGerd Hoffmann         xhci_xfer_data(xfer, xfer->data, xfer->data_length, 0, 1, 0);
1593f1ae32a1SGerd Hoffmann     }
1594f1ae32a1SGerd Hoffmann     ret = usb_handle_packet(dev, &xfer->packet);
1595f1ae32a1SGerd Hoffmann 
1596f1ae32a1SGerd Hoffmann     xhci_complete_packet(xfer, ret);
1597f1ae32a1SGerd Hoffmann     if (!xfer->running_async && !xfer->running_retry) {
1598f1ae32a1SGerd Hoffmann         xhci_kick_ep(xhci, xfer->slotid, xfer->epid);
1599f1ae32a1SGerd Hoffmann     }
1600f1ae32a1SGerd Hoffmann     return 0;
1601f1ae32a1SGerd Hoffmann }
1602f1ae32a1SGerd Hoffmann 
1603f1ae32a1SGerd Hoffmann static int xhci_fire_transfer(XHCIState *xhci, XHCITransfer *xfer, XHCIEPContext *epctx)
1604f1ae32a1SGerd Hoffmann {
1605f1ae32a1SGerd Hoffmann     int i;
1606f1ae32a1SGerd Hoffmann     unsigned int length = 0;
1607f1ae32a1SGerd Hoffmann     XHCITRB *trb;
1608f1ae32a1SGerd Hoffmann 
1609f1ae32a1SGerd Hoffmann     DPRINTF("xhci_fire_transfer(slotid=%d,epid=%d)\n", xfer->slotid, xfer->epid);
1610f1ae32a1SGerd Hoffmann 
1611f1ae32a1SGerd Hoffmann     for (i = 0; i < xfer->trb_count; i++) {
1612f1ae32a1SGerd Hoffmann         trb = &xfer->trbs[i];
1613f1ae32a1SGerd Hoffmann         if (TRB_TYPE(*trb) == TR_NORMAL || TRB_TYPE(*trb) == TR_ISOCH) {
1614f1ae32a1SGerd Hoffmann             length += trb->status & 0x1ffff;
1615f1ae32a1SGerd Hoffmann         }
1616f1ae32a1SGerd Hoffmann     }
1617f1ae32a1SGerd Hoffmann     DPRINTF("xhci: total TD length=%d\n", length);
1618f1ae32a1SGerd Hoffmann 
1619f1ae32a1SGerd Hoffmann     if (!epctx->has_bg) {
1620f1ae32a1SGerd Hoffmann         xfer->data_length = length;
1621f1ae32a1SGerd Hoffmann         xfer->backgrounded = 0;
1622f1ae32a1SGerd Hoffmann         return xhci_submit(xhci, xfer, epctx);
1623f1ae32a1SGerd Hoffmann     } else {
1624f1ae32a1SGerd Hoffmann         if (!epctx->bg_running) {
1625f1ae32a1SGerd Hoffmann             for (i = 0; i < BG_XFERS; i++) {
1626f1ae32a1SGerd Hoffmann                 XHCITransfer *t = &epctx->bg_transfers[i];
1627f1ae32a1SGerd Hoffmann                 t->xhci = xhci;
1628f1ae32a1SGerd Hoffmann                 t->epid = xfer->epid;
1629f1ae32a1SGerd Hoffmann                 t->slotid = xfer->slotid;
1630f1ae32a1SGerd Hoffmann                 t->pkts = BG_PKTS;
1631f1ae32a1SGerd Hoffmann                 t->pktsize = epctx->max_psize;
1632f1ae32a1SGerd Hoffmann                 t->data_length = t->pkts * t->pktsize;
1633f1ae32a1SGerd Hoffmann                 t->bg_xfer = 1;
1634f1ae32a1SGerd Hoffmann                 if (xhci_submit(xhci, t, epctx) < 0) {
1635f1ae32a1SGerd Hoffmann                     fprintf(stderr, "xhci: bg submit failed\n");
1636f1ae32a1SGerd Hoffmann                     return -1;
1637f1ae32a1SGerd Hoffmann                 }
1638f1ae32a1SGerd Hoffmann             }
1639f1ae32a1SGerd Hoffmann             epctx->bg_running = 1;
1640f1ae32a1SGerd Hoffmann         }
1641f1ae32a1SGerd Hoffmann         xfer->backgrounded = 1;
1642f1ae32a1SGerd Hoffmann         xhci_bg_update(xhci, epctx);
1643f1ae32a1SGerd Hoffmann         return 0;
1644f1ae32a1SGerd Hoffmann     }
1645f1ae32a1SGerd Hoffmann }
1646f1ae32a1SGerd Hoffmann 
1647f1ae32a1SGerd Hoffmann static void xhci_kick_ep(XHCIState *xhci, unsigned int slotid, unsigned int epid)
1648f1ae32a1SGerd Hoffmann {
1649f1ae32a1SGerd Hoffmann     XHCIEPContext *epctx;
1650f1ae32a1SGerd Hoffmann     int length;
1651f1ae32a1SGerd Hoffmann     int i;
1652f1ae32a1SGerd Hoffmann 
1653*c1f6b493SGerd Hoffmann     trace_usb_xhci_ep_kick(slotid, epid);
1654f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
1655f1ae32a1SGerd Hoffmann     assert(epid >= 1 && epid <= 31);
1656f1ae32a1SGerd Hoffmann 
1657f1ae32a1SGerd Hoffmann     if (!xhci->slots[slotid-1].enabled) {
1658f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: xhci_kick_ep for disabled slot %d\n", slotid);
1659f1ae32a1SGerd Hoffmann         return;
1660f1ae32a1SGerd Hoffmann     }
1661f1ae32a1SGerd Hoffmann     epctx = xhci->slots[slotid-1].eps[epid-1];
1662f1ae32a1SGerd Hoffmann     if (!epctx) {
1663f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: xhci_kick_ep for disabled endpoint %d,%d\n",
1664f1ae32a1SGerd Hoffmann                 epid, slotid);
1665f1ae32a1SGerd Hoffmann         return;
1666f1ae32a1SGerd Hoffmann     }
1667f1ae32a1SGerd Hoffmann 
1668f1ae32a1SGerd Hoffmann     if (epctx->retry) {
1669f1ae32a1SGerd Hoffmann         /* retry nak'ed transfer */
1670f1ae32a1SGerd Hoffmann         XHCITransfer *xfer = epctx->retry;
1671f1ae32a1SGerd Hoffmann         int result;
1672f1ae32a1SGerd Hoffmann 
1673f1ae32a1SGerd Hoffmann         DPRINTF("xhci: retry nack'ed transfer ...\n");
1674f1ae32a1SGerd Hoffmann         assert(xfer->running_retry);
1675f1ae32a1SGerd Hoffmann         xhci_setup_packet(xfer, xfer->packet.ep->dev);
1676f1ae32a1SGerd Hoffmann         result = usb_handle_packet(xfer->packet.ep->dev, &xfer->packet);
1677f1ae32a1SGerd Hoffmann         if (result == USB_RET_NAK) {
1678f1ae32a1SGerd Hoffmann             DPRINTF("xhci: ... xfer still nacked\n");
1679f1ae32a1SGerd Hoffmann             return;
1680f1ae32a1SGerd Hoffmann         }
1681f1ae32a1SGerd Hoffmann         DPRINTF("xhci: ... result %d\n", result);
1682f1ae32a1SGerd Hoffmann         xhci_complete_packet(xfer, result);
1683f1ae32a1SGerd Hoffmann         assert(!xfer->running_retry);
1684f1ae32a1SGerd Hoffmann         epctx->retry = NULL;
1685f1ae32a1SGerd Hoffmann     }
1686f1ae32a1SGerd Hoffmann 
1687f1ae32a1SGerd Hoffmann     if (epctx->state == EP_HALTED) {
1688f1ae32a1SGerd Hoffmann         DPRINTF("xhci: ep halted, not running schedule\n");
1689f1ae32a1SGerd Hoffmann         return;
1690f1ae32a1SGerd Hoffmann     }
1691f1ae32a1SGerd Hoffmann 
1692f1ae32a1SGerd Hoffmann     xhci_set_ep_state(xhci, epctx, EP_RUNNING);
1693f1ae32a1SGerd Hoffmann 
1694f1ae32a1SGerd Hoffmann     while (1) {
1695f1ae32a1SGerd Hoffmann         XHCITransfer *xfer = &epctx->transfers[epctx->next_xfer];
1696f1ae32a1SGerd Hoffmann         if (xfer->running_async || xfer->running_retry || xfer->backgrounded) {
1697f1ae32a1SGerd Hoffmann             break;
1698f1ae32a1SGerd Hoffmann         }
1699f1ae32a1SGerd Hoffmann         length = xhci_ring_chain_length(xhci, &epctx->ring);
1700f1ae32a1SGerd Hoffmann         if (length < 0) {
1701f1ae32a1SGerd Hoffmann             break;
1702f1ae32a1SGerd Hoffmann         } else if (length == 0) {
1703f1ae32a1SGerd Hoffmann             break;
1704f1ae32a1SGerd Hoffmann         }
1705f1ae32a1SGerd Hoffmann         if (xfer->trbs && xfer->trb_alloced < length) {
1706f1ae32a1SGerd Hoffmann             xfer->trb_count = 0;
1707f1ae32a1SGerd Hoffmann             xfer->trb_alloced = 0;
1708f1ae32a1SGerd Hoffmann             g_free(xfer->trbs);
1709f1ae32a1SGerd Hoffmann             xfer->trbs = NULL;
1710f1ae32a1SGerd Hoffmann         }
1711f1ae32a1SGerd Hoffmann         if (!xfer->trbs) {
1712f1ae32a1SGerd Hoffmann             xfer->trbs = g_malloc(sizeof(XHCITRB) * length);
1713f1ae32a1SGerd Hoffmann             xfer->trb_alloced = length;
1714f1ae32a1SGerd Hoffmann         }
1715f1ae32a1SGerd Hoffmann         xfer->trb_count = length;
1716f1ae32a1SGerd Hoffmann 
1717f1ae32a1SGerd Hoffmann         for (i = 0; i < length; i++) {
1718f1ae32a1SGerd Hoffmann             assert(xhci_ring_fetch(xhci, &epctx->ring, &xfer->trbs[i], NULL));
1719f1ae32a1SGerd Hoffmann         }
1720f1ae32a1SGerd Hoffmann         xfer->xhci = xhci;
1721f1ae32a1SGerd Hoffmann         xfer->epid = epid;
1722f1ae32a1SGerd Hoffmann         xfer->slotid = slotid;
1723f1ae32a1SGerd Hoffmann 
1724f1ae32a1SGerd Hoffmann         if (epid == 1) {
1725f1ae32a1SGerd Hoffmann             if (xhci_fire_ctl_transfer(xhci, xfer) >= 0) {
1726f1ae32a1SGerd Hoffmann                 epctx->next_xfer = (epctx->next_xfer + 1) % TD_QUEUE;
1727f1ae32a1SGerd Hoffmann             } else {
1728f1ae32a1SGerd Hoffmann                 fprintf(stderr, "xhci: error firing CTL transfer\n");
1729f1ae32a1SGerd Hoffmann             }
1730f1ae32a1SGerd Hoffmann         } else {
1731f1ae32a1SGerd Hoffmann             if (xhci_fire_transfer(xhci, xfer, epctx) >= 0) {
1732f1ae32a1SGerd Hoffmann                 epctx->next_xfer = (epctx->next_xfer + 1) % TD_QUEUE;
1733f1ae32a1SGerd Hoffmann             } else {
1734f1ae32a1SGerd Hoffmann                 fprintf(stderr, "xhci: error firing data transfer\n");
1735f1ae32a1SGerd Hoffmann             }
1736f1ae32a1SGerd Hoffmann         }
1737f1ae32a1SGerd Hoffmann 
1738f1ae32a1SGerd Hoffmann         if (epctx->state == EP_HALTED) {
1739f1ae32a1SGerd Hoffmann             break;
1740f1ae32a1SGerd Hoffmann         }
1741f1ae32a1SGerd Hoffmann         if (xfer->running_retry) {
1742f1ae32a1SGerd Hoffmann             DPRINTF("xhci: xfer nacked, stopping schedule\n");
1743f1ae32a1SGerd Hoffmann             epctx->retry = xfer;
1744f1ae32a1SGerd Hoffmann             break;
1745f1ae32a1SGerd Hoffmann         }
1746f1ae32a1SGerd Hoffmann     }
1747f1ae32a1SGerd Hoffmann }
1748f1ae32a1SGerd Hoffmann 
1749f1ae32a1SGerd Hoffmann static TRBCCode xhci_enable_slot(XHCIState *xhci, unsigned int slotid)
1750f1ae32a1SGerd Hoffmann {
1751f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
1752f1ae32a1SGerd Hoffmann     DPRINTF("xhci_enable_slot(%d)\n", slotid);
1753f1ae32a1SGerd Hoffmann     xhci->slots[slotid-1].enabled = 1;
1754f1ae32a1SGerd Hoffmann     xhci->slots[slotid-1].port = 0;
1755f1ae32a1SGerd Hoffmann     memset(xhci->slots[slotid-1].eps, 0, sizeof(XHCIEPContext*)*31);
1756f1ae32a1SGerd Hoffmann 
1757f1ae32a1SGerd Hoffmann     return CC_SUCCESS;
1758f1ae32a1SGerd Hoffmann }
1759f1ae32a1SGerd Hoffmann 
1760f1ae32a1SGerd Hoffmann static TRBCCode xhci_disable_slot(XHCIState *xhci, unsigned int slotid)
1761f1ae32a1SGerd Hoffmann {
1762f1ae32a1SGerd Hoffmann     int i;
1763f1ae32a1SGerd Hoffmann 
1764f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
1765f1ae32a1SGerd Hoffmann     DPRINTF("xhci_disable_slot(%d)\n", slotid);
1766f1ae32a1SGerd Hoffmann 
1767f1ae32a1SGerd Hoffmann     for (i = 1; i <= 31; i++) {
1768f1ae32a1SGerd Hoffmann         if (xhci->slots[slotid-1].eps[i-1]) {
1769f1ae32a1SGerd Hoffmann             xhci_disable_ep(xhci, slotid, i);
1770f1ae32a1SGerd Hoffmann         }
1771f1ae32a1SGerd Hoffmann     }
1772f1ae32a1SGerd Hoffmann 
1773f1ae32a1SGerd Hoffmann     xhci->slots[slotid-1].enabled = 0;
1774f1ae32a1SGerd Hoffmann     return CC_SUCCESS;
1775f1ae32a1SGerd Hoffmann }
1776f1ae32a1SGerd Hoffmann 
1777f1ae32a1SGerd Hoffmann static TRBCCode xhci_address_slot(XHCIState *xhci, unsigned int slotid,
1778f1ae32a1SGerd Hoffmann                                   uint64_t pictx, bool bsr)
1779f1ae32a1SGerd Hoffmann {
1780f1ae32a1SGerd Hoffmann     XHCISlot *slot;
1781f1ae32a1SGerd Hoffmann     USBDevice *dev;
178259a70ccdSDavid Gibson     dma_addr_t ictx, octx, dcbaap;
1783f1ae32a1SGerd Hoffmann     uint64_t poctx;
1784f1ae32a1SGerd Hoffmann     uint32_t ictl_ctx[2];
1785f1ae32a1SGerd Hoffmann     uint32_t slot_ctx[4];
1786f1ae32a1SGerd Hoffmann     uint32_t ep0_ctx[5];
1787f1ae32a1SGerd Hoffmann     unsigned int port;
1788f1ae32a1SGerd Hoffmann     int i;
1789f1ae32a1SGerd Hoffmann     TRBCCode res;
1790f1ae32a1SGerd Hoffmann 
1791f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
1792f1ae32a1SGerd Hoffmann     DPRINTF("xhci_address_slot(%d)\n", slotid);
1793f1ae32a1SGerd Hoffmann 
1794f1ae32a1SGerd Hoffmann     dcbaap = xhci_addr64(xhci->dcbaap_low, xhci->dcbaap_high);
179559a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, dcbaap + 8*slotid, &poctx, sizeof(poctx));
1796f1ae32a1SGerd Hoffmann     ictx = xhci_mask64(pictx);
1797f1ae32a1SGerd Hoffmann     octx = xhci_mask64(le64_to_cpu(poctx));
1798f1ae32a1SGerd Hoffmann 
179959a70ccdSDavid Gibson     DPRINTF("xhci: input context at "DMA_ADDR_FMT"\n", ictx);
180059a70ccdSDavid Gibson     DPRINTF("xhci: output context at "DMA_ADDR_FMT"\n", octx);
1801f1ae32a1SGerd Hoffmann 
180259a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, ictx, ictl_ctx, sizeof(ictl_ctx));
1803f1ae32a1SGerd Hoffmann 
1804f1ae32a1SGerd Hoffmann     if (ictl_ctx[0] != 0x0 || ictl_ctx[1] != 0x3) {
1805f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: invalid input context control %08x %08x\n",
1806f1ae32a1SGerd Hoffmann                 ictl_ctx[0], ictl_ctx[1]);
1807f1ae32a1SGerd Hoffmann         return CC_TRB_ERROR;
1808f1ae32a1SGerd Hoffmann     }
1809f1ae32a1SGerd Hoffmann 
181059a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, ictx+32, slot_ctx, sizeof(slot_ctx));
181159a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, ictx+64, ep0_ctx, sizeof(ep0_ctx));
1812f1ae32a1SGerd Hoffmann 
1813f1ae32a1SGerd Hoffmann     DPRINTF("xhci: input slot context: %08x %08x %08x %08x\n",
1814f1ae32a1SGerd Hoffmann             slot_ctx[0], slot_ctx[1], slot_ctx[2], slot_ctx[3]);
1815f1ae32a1SGerd Hoffmann 
1816f1ae32a1SGerd Hoffmann     DPRINTF("xhci: input ep0 context: %08x %08x %08x %08x %08x\n",
1817f1ae32a1SGerd Hoffmann             ep0_ctx[0], ep0_ctx[1], ep0_ctx[2], ep0_ctx[3], ep0_ctx[4]);
1818f1ae32a1SGerd Hoffmann 
1819f1ae32a1SGerd Hoffmann     port = (slot_ctx[1]>>16) & 0xFF;
1820f1ae32a1SGerd Hoffmann     dev = xhci->ports[port-1].port.dev;
1821f1ae32a1SGerd Hoffmann 
1822f1ae32a1SGerd Hoffmann     if (port < 1 || port > MAXPORTS) {
1823f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: bad port %d\n", port);
1824f1ae32a1SGerd Hoffmann         return CC_TRB_ERROR;
1825f1ae32a1SGerd Hoffmann     } else if (!dev) {
1826f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: port %d not connected\n", port);
1827f1ae32a1SGerd Hoffmann         return CC_USB_TRANSACTION_ERROR;
1828f1ae32a1SGerd Hoffmann     }
1829f1ae32a1SGerd Hoffmann 
1830f1ae32a1SGerd Hoffmann     for (i = 0; i < MAXSLOTS; i++) {
1831f1ae32a1SGerd Hoffmann         if (xhci->slots[i].port == port) {
1832f1ae32a1SGerd Hoffmann             fprintf(stderr, "xhci: port %d already assigned to slot %d\n",
1833f1ae32a1SGerd Hoffmann                     port, i+1);
1834f1ae32a1SGerd Hoffmann             return CC_TRB_ERROR;
1835f1ae32a1SGerd Hoffmann         }
1836f1ae32a1SGerd Hoffmann     }
1837f1ae32a1SGerd Hoffmann 
1838f1ae32a1SGerd Hoffmann     slot = &xhci->slots[slotid-1];
1839f1ae32a1SGerd Hoffmann     slot->port = port;
1840f1ae32a1SGerd Hoffmann     slot->ctx = octx;
1841f1ae32a1SGerd Hoffmann 
1842f1ae32a1SGerd Hoffmann     if (bsr) {
1843f1ae32a1SGerd Hoffmann         slot_ctx[3] = SLOT_DEFAULT << SLOT_STATE_SHIFT;
1844f1ae32a1SGerd Hoffmann     } else {
1845f1ae32a1SGerd Hoffmann         slot->devaddr = xhci->devaddr++;
1846f1ae32a1SGerd Hoffmann         slot_ctx[3] = (SLOT_ADDRESSED << SLOT_STATE_SHIFT) | slot->devaddr;
1847f1ae32a1SGerd Hoffmann         DPRINTF("xhci: device address is %d\n", slot->devaddr);
1848f1ae32a1SGerd Hoffmann         usb_device_handle_control(dev, NULL,
1849f1ae32a1SGerd Hoffmann                                   DeviceOutRequest | USB_REQ_SET_ADDRESS,
1850f1ae32a1SGerd Hoffmann                                   slot->devaddr, 0, 0, NULL);
1851f1ae32a1SGerd Hoffmann     }
1852f1ae32a1SGerd Hoffmann 
1853f1ae32a1SGerd Hoffmann     res = xhci_enable_ep(xhci, slotid, 1, octx+32, ep0_ctx);
1854f1ae32a1SGerd Hoffmann 
1855f1ae32a1SGerd Hoffmann     DPRINTF("xhci: output slot context: %08x %08x %08x %08x\n",
1856f1ae32a1SGerd Hoffmann             slot_ctx[0], slot_ctx[1], slot_ctx[2], slot_ctx[3]);
1857f1ae32a1SGerd Hoffmann     DPRINTF("xhci: output ep0 context: %08x %08x %08x %08x %08x\n",
1858f1ae32a1SGerd Hoffmann             ep0_ctx[0], ep0_ctx[1], ep0_ctx[2], ep0_ctx[3], ep0_ctx[4]);
1859f1ae32a1SGerd Hoffmann 
186059a70ccdSDavid Gibson     pci_dma_write(&xhci->pci_dev, octx, slot_ctx, sizeof(slot_ctx));
186159a70ccdSDavid Gibson     pci_dma_write(&xhci->pci_dev, octx+32, ep0_ctx, sizeof(ep0_ctx));
1862f1ae32a1SGerd Hoffmann 
1863f1ae32a1SGerd Hoffmann     return res;
1864f1ae32a1SGerd Hoffmann }
1865f1ae32a1SGerd Hoffmann 
1866f1ae32a1SGerd Hoffmann 
1867f1ae32a1SGerd Hoffmann static TRBCCode xhci_configure_slot(XHCIState *xhci, unsigned int slotid,
1868f1ae32a1SGerd Hoffmann                                   uint64_t pictx, bool dc)
1869f1ae32a1SGerd Hoffmann {
187059a70ccdSDavid Gibson     dma_addr_t ictx, octx;
1871f1ae32a1SGerd Hoffmann     uint32_t ictl_ctx[2];
1872f1ae32a1SGerd Hoffmann     uint32_t slot_ctx[4];
1873f1ae32a1SGerd Hoffmann     uint32_t islot_ctx[4];
1874f1ae32a1SGerd Hoffmann     uint32_t ep_ctx[5];
1875f1ae32a1SGerd Hoffmann     int i;
1876f1ae32a1SGerd Hoffmann     TRBCCode res;
1877f1ae32a1SGerd Hoffmann 
1878f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
1879f1ae32a1SGerd Hoffmann     DPRINTF("xhci_configure_slot(%d)\n", slotid);
1880f1ae32a1SGerd Hoffmann 
1881f1ae32a1SGerd Hoffmann     ictx = xhci_mask64(pictx);
1882f1ae32a1SGerd Hoffmann     octx = xhci->slots[slotid-1].ctx;
1883f1ae32a1SGerd Hoffmann 
188459a70ccdSDavid Gibson     DPRINTF("xhci: input context at "DMA_ADDR_FMT"\n", ictx);
188559a70ccdSDavid Gibson     DPRINTF("xhci: output context at "DMA_ADDR_FMT"\n", octx);
1886f1ae32a1SGerd Hoffmann 
1887f1ae32a1SGerd Hoffmann     if (dc) {
1888f1ae32a1SGerd Hoffmann         for (i = 2; i <= 31; i++) {
1889f1ae32a1SGerd Hoffmann             if (xhci->slots[slotid-1].eps[i-1]) {
1890f1ae32a1SGerd Hoffmann                 xhci_disable_ep(xhci, slotid, i);
1891f1ae32a1SGerd Hoffmann             }
1892f1ae32a1SGerd Hoffmann         }
1893f1ae32a1SGerd Hoffmann 
189459a70ccdSDavid Gibson         pci_dma_read(&xhci->pci_dev, octx, slot_ctx, sizeof(slot_ctx));
1895f1ae32a1SGerd Hoffmann         slot_ctx[3] &= ~(SLOT_STATE_MASK << SLOT_STATE_SHIFT);
1896f1ae32a1SGerd Hoffmann         slot_ctx[3] |= SLOT_ADDRESSED << SLOT_STATE_SHIFT;
1897f1ae32a1SGerd Hoffmann         DPRINTF("xhci: output slot context: %08x %08x %08x %08x\n",
1898f1ae32a1SGerd Hoffmann                 slot_ctx[0], slot_ctx[1], slot_ctx[2], slot_ctx[3]);
189959a70ccdSDavid Gibson         pci_dma_write(&xhci->pci_dev, octx, slot_ctx, sizeof(slot_ctx));
1900f1ae32a1SGerd Hoffmann 
1901f1ae32a1SGerd Hoffmann         return CC_SUCCESS;
1902f1ae32a1SGerd Hoffmann     }
1903f1ae32a1SGerd Hoffmann 
190459a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, ictx, ictl_ctx, sizeof(ictl_ctx));
1905f1ae32a1SGerd Hoffmann 
1906f1ae32a1SGerd Hoffmann     if ((ictl_ctx[0] & 0x3) != 0x0 || (ictl_ctx[1] & 0x3) != 0x1) {
1907f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: invalid input context control %08x %08x\n",
1908f1ae32a1SGerd Hoffmann                 ictl_ctx[0], ictl_ctx[1]);
1909f1ae32a1SGerd Hoffmann         return CC_TRB_ERROR;
1910f1ae32a1SGerd Hoffmann     }
1911f1ae32a1SGerd Hoffmann 
191259a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, ictx+32, islot_ctx, sizeof(islot_ctx));
191359a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, octx, slot_ctx, sizeof(slot_ctx));
1914f1ae32a1SGerd Hoffmann 
1915f1ae32a1SGerd Hoffmann     if (SLOT_STATE(slot_ctx[3]) < SLOT_ADDRESSED) {
1916f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: invalid slot state %08x\n", slot_ctx[3]);
1917f1ae32a1SGerd Hoffmann         return CC_CONTEXT_STATE_ERROR;
1918f1ae32a1SGerd Hoffmann     }
1919f1ae32a1SGerd Hoffmann 
1920f1ae32a1SGerd Hoffmann     for (i = 2; i <= 31; i++) {
1921f1ae32a1SGerd Hoffmann         if (ictl_ctx[0] & (1<<i)) {
1922f1ae32a1SGerd Hoffmann             xhci_disable_ep(xhci, slotid, i);
1923f1ae32a1SGerd Hoffmann         }
1924f1ae32a1SGerd Hoffmann         if (ictl_ctx[1] & (1<<i)) {
192559a70ccdSDavid Gibson             pci_dma_read(&xhci->pci_dev, ictx+32+(32*i), ep_ctx,
192659a70ccdSDavid Gibson                          sizeof(ep_ctx));
1927f1ae32a1SGerd Hoffmann             DPRINTF("xhci: input ep%d.%d context: %08x %08x %08x %08x %08x\n",
1928f1ae32a1SGerd Hoffmann                     i/2, i%2, ep_ctx[0], ep_ctx[1], ep_ctx[2],
1929f1ae32a1SGerd Hoffmann                     ep_ctx[3], ep_ctx[4]);
1930f1ae32a1SGerd Hoffmann             xhci_disable_ep(xhci, slotid, i);
1931f1ae32a1SGerd Hoffmann             res = xhci_enable_ep(xhci, slotid, i, octx+(32*i), ep_ctx);
1932f1ae32a1SGerd Hoffmann             if (res != CC_SUCCESS) {
1933f1ae32a1SGerd Hoffmann                 return res;
1934f1ae32a1SGerd Hoffmann             }
1935f1ae32a1SGerd Hoffmann             DPRINTF("xhci: output ep%d.%d context: %08x %08x %08x %08x %08x\n",
1936f1ae32a1SGerd Hoffmann                     i/2, i%2, ep_ctx[0], ep_ctx[1], ep_ctx[2],
1937f1ae32a1SGerd Hoffmann                     ep_ctx[3], ep_ctx[4]);
193859a70ccdSDavid Gibson             pci_dma_write(&xhci->pci_dev, octx+(32*i), ep_ctx, sizeof(ep_ctx));
1939f1ae32a1SGerd Hoffmann         }
1940f1ae32a1SGerd Hoffmann     }
1941f1ae32a1SGerd Hoffmann 
1942f1ae32a1SGerd Hoffmann     slot_ctx[3] &= ~(SLOT_STATE_MASK << SLOT_STATE_SHIFT);
1943f1ae32a1SGerd Hoffmann     slot_ctx[3] |= SLOT_CONFIGURED << SLOT_STATE_SHIFT;
1944f1ae32a1SGerd Hoffmann     slot_ctx[0] &= ~(SLOT_CONTEXT_ENTRIES_MASK << SLOT_CONTEXT_ENTRIES_SHIFT);
1945f1ae32a1SGerd Hoffmann     slot_ctx[0] |= islot_ctx[0] & (SLOT_CONTEXT_ENTRIES_MASK <<
1946f1ae32a1SGerd Hoffmann                                    SLOT_CONTEXT_ENTRIES_SHIFT);
1947f1ae32a1SGerd Hoffmann     DPRINTF("xhci: output slot context: %08x %08x %08x %08x\n",
1948f1ae32a1SGerd Hoffmann             slot_ctx[0], slot_ctx[1], slot_ctx[2], slot_ctx[3]);
1949f1ae32a1SGerd Hoffmann 
195059a70ccdSDavid Gibson     pci_dma_write(&xhci->pci_dev, octx, slot_ctx, sizeof(slot_ctx));
1951f1ae32a1SGerd Hoffmann 
1952f1ae32a1SGerd Hoffmann     return CC_SUCCESS;
1953f1ae32a1SGerd Hoffmann }
1954f1ae32a1SGerd Hoffmann 
1955f1ae32a1SGerd Hoffmann 
1956f1ae32a1SGerd Hoffmann static TRBCCode xhci_evaluate_slot(XHCIState *xhci, unsigned int slotid,
1957f1ae32a1SGerd Hoffmann                                    uint64_t pictx)
1958f1ae32a1SGerd Hoffmann {
195959a70ccdSDavid Gibson     dma_addr_t ictx, octx;
1960f1ae32a1SGerd Hoffmann     uint32_t ictl_ctx[2];
1961f1ae32a1SGerd Hoffmann     uint32_t iep0_ctx[5];
1962f1ae32a1SGerd Hoffmann     uint32_t ep0_ctx[5];
1963f1ae32a1SGerd Hoffmann     uint32_t islot_ctx[4];
1964f1ae32a1SGerd Hoffmann     uint32_t slot_ctx[4];
1965f1ae32a1SGerd Hoffmann 
1966f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
1967f1ae32a1SGerd Hoffmann     DPRINTF("xhci_evaluate_slot(%d)\n", slotid);
1968f1ae32a1SGerd Hoffmann 
1969f1ae32a1SGerd Hoffmann     ictx = xhci_mask64(pictx);
1970f1ae32a1SGerd Hoffmann     octx = xhci->slots[slotid-1].ctx;
1971f1ae32a1SGerd Hoffmann 
197259a70ccdSDavid Gibson     DPRINTF("xhci: input context at "DMA_ADDR_FMT"\n", ictx);
197359a70ccdSDavid Gibson     DPRINTF("xhci: output context at "DMA_ADDR_FMT"\n", octx);
1974f1ae32a1SGerd Hoffmann 
197559a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, ictx, ictl_ctx, sizeof(ictl_ctx));
1976f1ae32a1SGerd Hoffmann 
1977f1ae32a1SGerd Hoffmann     if (ictl_ctx[0] != 0x0 || ictl_ctx[1] & ~0x3) {
1978f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: invalid input context control %08x %08x\n",
1979f1ae32a1SGerd Hoffmann                 ictl_ctx[0], ictl_ctx[1]);
1980f1ae32a1SGerd Hoffmann         return CC_TRB_ERROR;
1981f1ae32a1SGerd Hoffmann     }
1982f1ae32a1SGerd Hoffmann 
1983f1ae32a1SGerd Hoffmann     if (ictl_ctx[1] & 0x1) {
198459a70ccdSDavid Gibson         pci_dma_read(&xhci->pci_dev, ictx+32, islot_ctx, sizeof(islot_ctx));
1985f1ae32a1SGerd Hoffmann 
1986f1ae32a1SGerd Hoffmann         DPRINTF("xhci: input slot context: %08x %08x %08x %08x\n",
1987f1ae32a1SGerd Hoffmann                 islot_ctx[0], islot_ctx[1], islot_ctx[2], islot_ctx[3]);
1988f1ae32a1SGerd Hoffmann 
198959a70ccdSDavid Gibson         pci_dma_read(&xhci->pci_dev, octx, slot_ctx, sizeof(slot_ctx));
1990f1ae32a1SGerd Hoffmann 
1991f1ae32a1SGerd Hoffmann         slot_ctx[1] &= ~0xFFFF; /* max exit latency */
1992f1ae32a1SGerd Hoffmann         slot_ctx[1] |= islot_ctx[1] & 0xFFFF;
1993f1ae32a1SGerd Hoffmann         slot_ctx[2] &= ~0xFF00000; /* interrupter target */
1994f1ae32a1SGerd Hoffmann         slot_ctx[2] |= islot_ctx[2] & 0xFF000000;
1995f1ae32a1SGerd Hoffmann 
1996f1ae32a1SGerd Hoffmann         DPRINTF("xhci: output slot context: %08x %08x %08x %08x\n",
1997f1ae32a1SGerd Hoffmann                 slot_ctx[0], slot_ctx[1], slot_ctx[2], slot_ctx[3]);
1998f1ae32a1SGerd Hoffmann 
199959a70ccdSDavid Gibson         pci_dma_write(&xhci->pci_dev, octx, slot_ctx, sizeof(slot_ctx));
2000f1ae32a1SGerd Hoffmann     }
2001f1ae32a1SGerd Hoffmann 
2002f1ae32a1SGerd Hoffmann     if (ictl_ctx[1] & 0x2) {
200359a70ccdSDavid Gibson         pci_dma_read(&xhci->pci_dev, ictx+64, iep0_ctx, sizeof(iep0_ctx));
2004f1ae32a1SGerd Hoffmann 
2005f1ae32a1SGerd Hoffmann         DPRINTF("xhci: input ep0 context: %08x %08x %08x %08x %08x\n",
2006f1ae32a1SGerd Hoffmann                 iep0_ctx[0], iep0_ctx[1], iep0_ctx[2],
2007f1ae32a1SGerd Hoffmann                 iep0_ctx[3], iep0_ctx[4]);
2008f1ae32a1SGerd Hoffmann 
200959a70ccdSDavid Gibson         pci_dma_read(&xhci->pci_dev, octx+32, ep0_ctx, sizeof(ep0_ctx));
2010f1ae32a1SGerd Hoffmann 
2011f1ae32a1SGerd Hoffmann         ep0_ctx[1] &= ~0xFFFF0000; /* max packet size*/
2012f1ae32a1SGerd Hoffmann         ep0_ctx[1] |= iep0_ctx[1] & 0xFFFF0000;
2013f1ae32a1SGerd Hoffmann 
2014f1ae32a1SGerd Hoffmann         DPRINTF("xhci: output ep0 context: %08x %08x %08x %08x %08x\n",
2015f1ae32a1SGerd Hoffmann                 ep0_ctx[0], ep0_ctx[1], ep0_ctx[2], ep0_ctx[3], ep0_ctx[4]);
2016f1ae32a1SGerd Hoffmann 
201759a70ccdSDavid Gibson         pci_dma_write(&xhci->pci_dev, octx+32, ep0_ctx, sizeof(ep0_ctx));
2018f1ae32a1SGerd Hoffmann     }
2019f1ae32a1SGerd Hoffmann 
2020f1ae32a1SGerd Hoffmann     return CC_SUCCESS;
2021f1ae32a1SGerd Hoffmann }
2022f1ae32a1SGerd Hoffmann 
2023f1ae32a1SGerd Hoffmann static TRBCCode xhci_reset_slot(XHCIState *xhci, unsigned int slotid)
2024f1ae32a1SGerd Hoffmann {
2025f1ae32a1SGerd Hoffmann     uint32_t slot_ctx[4];
202659a70ccdSDavid Gibson     dma_addr_t octx;
2027f1ae32a1SGerd Hoffmann     int i;
2028f1ae32a1SGerd Hoffmann 
2029f1ae32a1SGerd Hoffmann     assert(slotid >= 1 && slotid <= MAXSLOTS);
2030f1ae32a1SGerd Hoffmann     DPRINTF("xhci_reset_slot(%d)\n", slotid);
2031f1ae32a1SGerd Hoffmann 
2032f1ae32a1SGerd Hoffmann     octx = xhci->slots[slotid-1].ctx;
2033f1ae32a1SGerd Hoffmann 
203459a70ccdSDavid Gibson     DPRINTF("xhci: output context at "DMA_ADDR_FMT"\n", octx);
2035f1ae32a1SGerd Hoffmann 
2036f1ae32a1SGerd Hoffmann     for (i = 2; i <= 31; i++) {
2037f1ae32a1SGerd Hoffmann         if (xhci->slots[slotid-1].eps[i-1]) {
2038f1ae32a1SGerd Hoffmann             xhci_disable_ep(xhci, slotid, i);
2039f1ae32a1SGerd Hoffmann         }
2040f1ae32a1SGerd Hoffmann     }
2041f1ae32a1SGerd Hoffmann 
204259a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, octx, slot_ctx, sizeof(slot_ctx));
2043f1ae32a1SGerd Hoffmann     slot_ctx[3] &= ~(SLOT_STATE_MASK << SLOT_STATE_SHIFT);
2044f1ae32a1SGerd Hoffmann     slot_ctx[3] |= SLOT_DEFAULT << SLOT_STATE_SHIFT;
2045f1ae32a1SGerd Hoffmann     DPRINTF("xhci: output slot context: %08x %08x %08x %08x\n",
2046f1ae32a1SGerd Hoffmann             slot_ctx[0], slot_ctx[1], slot_ctx[2], slot_ctx[3]);
204759a70ccdSDavid Gibson     pci_dma_write(&xhci->pci_dev, octx, slot_ctx, sizeof(slot_ctx));
2048f1ae32a1SGerd Hoffmann 
2049f1ae32a1SGerd Hoffmann     return CC_SUCCESS;
2050f1ae32a1SGerd Hoffmann }
2051f1ae32a1SGerd Hoffmann 
2052f1ae32a1SGerd Hoffmann static unsigned int xhci_get_slot(XHCIState *xhci, XHCIEvent *event, XHCITRB *trb)
2053f1ae32a1SGerd Hoffmann {
2054f1ae32a1SGerd Hoffmann     unsigned int slotid;
2055f1ae32a1SGerd Hoffmann     slotid = (trb->control >> TRB_CR_SLOTID_SHIFT) & TRB_CR_SLOTID_MASK;
2056f1ae32a1SGerd Hoffmann     if (slotid < 1 || slotid > MAXSLOTS) {
2057f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: bad slot id %d\n", slotid);
2058f1ae32a1SGerd Hoffmann         event->ccode = CC_TRB_ERROR;
2059f1ae32a1SGerd Hoffmann         return 0;
2060f1ae32a1SGerd Hoffmann     } else if (!xhci->slots[slotid-1].enabled) {
2061f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: slot id %d not enabled\n", slotid);
2062f1ae32a1SGerd Hoffmann         event->ccode = CC_SLOT_NOT_ENABLED_ERROR;
2063f1ae32a1SGerd Hoffmann         return 0;
2064f1ae32a1SGerd Hoffmann     }
2065f1ae32a1SGerd Hoffmann     return slotid;
2066f1ae32a1SGerd Hoffmann }
2067f1ae32a1SGerd Hoffmann 
2068f1ae32a1SGerd Hoffmann static TRBCCode xhci_get_port_bandwidth(XHCIState *xhci, uint64_t pctx)
2069f1ae32a1SGerd Hoffmann {
207059a70ccdSDavid Gibson     dma_addr_t ctx;
2071f1ae32a1SGerd Hoffmann     uint8_t bw_ctx[MAXPORTS+1];
2072f1ae32a1SGerd Hoffmann 
2073f1ae32a1SGerd Hoffmann     DPRINTF("xhci_get_port_bandwidth()\n");
2074f1ae32a1SGerd Hoffmann 
2075f1ae32a1SGerd Hoffmann     ctx = xhci_mask64(pctx);
2076f1ae32a1SGerd Hoffmann 
207759a70ccdSDavid Gibson     DPRINTF("xhci: bandwidth context at "DMA_ADDR_FMT"\n", ctx);
2078f1ae32a1SGerd Hoffmann 
2079f1ae32a1SGerd Hoffmann     /* TODO: actually implement real values here */
2080f1ae32a1SGerd Hoffmann     bw_ctx[0] = 0;
2081f1ae32a1SGerd Hoffmann     memset(&bw_ctx[1], 80, MAXPORTS); /* 80% */
208259a70ccdSDavid Gibson     pci_dma_write(&xhci->pci_dev, ctx, bw_ctx, sizeof(bw_ctx));
2083f1ae32a1SGerd Hoffmann 
2084f1ae32a1SGerd Hoffmann     return CC_SUCCESS;
2085f1ae32a1SGerd Hoffmann }
2086f1ae32a1SGerd Hoffmann 
2087f1ae32a1SGerd Hoffmann static uint32_t rotl(uint32_t v, unsigned count)
2088f1ae32a1SGerd Hoffmann {
2089f1ae32a1SGerd Hoffmann     count &= 31;
2090f1ae32a1SGerd Hoffmann     return (v << count) | (v >> (32 - count));
2091f1ae32a1SGerd Hoffmann }
2092f1ae32a1SGerd Hoffmann 
2093f1ae32a1SGerd Hoffmann 
2094f1ae32a1SGerd Hoffmann static uint32_t xhci_nec_challenge(uint32_t hi, uint32_t lo)
2095f1ae32a1SGerd Hoffmann {
2096f1ae32a1SGerd Hoffmann     uint32_t val;
2097f1ae32a1SGerd Hoffmann     val = rotl(lo - 0x49434878, 32 - ((hi>>8) & 0x1F));
2098f1ae32a1SGerd Hoffmann     val += rotl(lo + 0x49434878, hi & 0x1F);
2099f1ae32a1SGerd Hoffmann     val -= rotl(hi ^ 0x49434878, (lo >> 16) & 0x1F);
2100f1ae32a1SGerd Hoffmann     return ~val;
2101f1ae32a1SGerd Hoffmann }
2102f1ae32a1SGerd Hoffmann 
210359a70ccdSDavid Gibson static void xhci_via_challenge(XHCIState *xhci, uint64_t addr)
2104f1ae32a1SGerd Hoffmann {
2105f1ae32a1SGerd Hoffmann     uint32_t buf[8];
2106f1ae32a1SGerd Hoffmann     uint32_t obuf[8];
210759a70ccdSDavid Gibson     dma_addr_t paddr = xhci_mask64(addr);
2108f1ae32a1SGerd Hoffmann 
210959a70ccdSDavid Gibson     pci_dma_read(&xhci->pci_dev, paddr, &buf, 32);
2110f1ae32a1SGerd Hoffmann 
2111f1ae32a1SGerd Hoffmann     memcpy(obuf, buf, sizeof(obuf));
2112f1ae32a1SGerd Hoffmann 
2113f1ae32a1SGerd Hoffmann     if ((buf[0] & 0xff) == 2) {
2114f1ae32a1SGerd Hoffmann         obuf[0] = 0x49932000 + 0x54dc200 * buf[2] + 0x7429b578 * buf[3];
2115f1ae32a1SGerd Hoffmann         obuf[0] |=  (buf[2] * buf[3]) & 0xff;
2116f1ae32a1SGerd Hoffmann         obuf[1] = 0x0132bb37 + 0xe89 * buf[2] + 0xf09 * buf[3];
2117f1ae32a1SGerd Hoffmann         obuf[2] = 0x0066c2e9 + 0x2091 * buf[2] + 0x19bd * buf[3];
2118f1ae32a1SGerd Hoffmann         obuf[3] = 0xd5281342 + 0x2cc9691 * buf[2] + 0x2367662 * buf[3];
2119f1ae32a1SGerd Hoffmann         obuf[4] = 0x0123c75c + 0x1595 * buf[2] + 0x19ec * buf[3];
2120f1ae32a1SGerd Hoffmann         obuf[5] = 0x00f695de + 0x26fd * buf[2] + 0x3e9 * buf[3];
2121f1ae32a1SGerd Hoffmann         obuf[6] = obuf[2] ^ obuf[3] ^ 0x29472956;
2122f1ae32a1SGerd Hoffmann         obuf[7] = obuf[2] ^ obuf[3] ^ 0x65866593;
2123f1ae32a1SGerd Hoffmann     }
2124f1ae32a1SGerd Hoffmann 
212559a70ccdSDavid Gibson     pci_dma_write(&xhci->pci_dev, paddr, &obuf, 32);
2126f1ae32a1SGerd Hoffmann }
2127f1ae32a1SGerd Hoffmann 
2128f1ae32a1SGerd Hoffmann static void xhci_process_commands(XHCIState *xhci)
2129f1ae32a1SGerd Hoffmann {
2130f1ae32a1SGerd Hoffmann     XHCITRB trb;
2131f1ae32a1SGerd Hoffmann     TRBType type;
2132f1ae32a1SGerd Hoffmann     XHCIEvent event = {ER_COMMAND_COMPLETE, CC_SUCCESS};
213359a70ccdSDavid Gibson     dma_addr_t addr;
2134f1ae32a1SGerd Hoffmann     unsigned int i, slotid = 0;
2135f1ae32a1SGerd Hoffmann 
2136f1ae32a1SGerd Hoffmann     DPRINTF("xhci_process_commands()\n");
2137f1ae32a1SGerd Hoffmann     if (!xhci_running(xhci)) {
2138f1ae32a1SGerd Hoffmann         DPRINTF("xhci_process_commands() called while xHC stopped or paused\n");
2139f1ae32a1SGerd Hoffmann         return;
2140f1ae32a1SGerd Hoffmann     }
2141f1ae32a1SGerd Hoffmann 
2142f1ae32a1SGerd Hoffmann     xhci->crcr_low |= CRCR_CRR;
2143f1ae32a1SGerd Hoffmann 
2144f1ae32a1SGerd Hoffmann     while ((type = xhci_ring_fetch(xhci, &xhci->cmd_ring, &trb, &addr))) {
2145f1ae32a1SGerd Hoffmann         event.ptr = addr;
2146f1ae32a1SGerd Hoffmann         switch (type) {
2147f1ae32a1SGerd Hoffmann         case CR_ENABLE_SLOT:
2148f1ae32a1SGerd Hoffmann             for (i = 0; i < MAXSLOTS; i++) {
2149f1ae32a1SGerd Hoffmann                 if (!xhci->slots[i].enabled) {
2150f1ae32a1SGerd Hoffmann                     break;
2151f1ae32a1SGerd Hoffmann                 }
2152f1ae32a1SGerd Hoffmann             }
2153f1ae32a1SGerd Hoffmann             if (i >= MAXSLOTS) {
2154f1ae32a1SGerd Hoffmann                 fprintf(stderr, "xhci: no device slots available\n");
2155f1ae32a1SGerd Hoffmann                 event.ccode = CC_NO_SLOTS_ERROR;
2156f1ae32a1SGerd Hoffmann             } else {
2157f1ae32a1SGerd Hoffmann                 slotid = i+1;
2158f1ae32a1SGerd Hoffmann                 event.ccode = xhci_enable_slot(xhci, slotid);
2159f1ae32a1SGerd Hoffmann             }
2160f1ae32a1SGerd Hoffmann             break;
2161f1ae32a1SGerd Hoffmann         case CR_DISABLE_SLOT:
2162f1ae32a1SGerd Hoffmann             slotid = xhci_get_slot(xhci, &event, &trb);
2163f1ae32a1SGerd Hoffmann             if (slotid) {
2164f1ae32a1SGerd Hoffmann                 event.ccode = xhci_disable_slot(xhci, slotid);
2165f1ae32a1SGerd Hoffmann             }
2166f1ae32a1SGerd Hoffmann             break;
2167f1ae32a1SGerd Hoffmann         case CR_ADDRESS_DEVICE:
2168f1ae32a1SGerd Hoffmann             slotid = xhci_get_slot(xhci, &event, &trb);
2169f1ae32a1SGerd Hoffmann             if (slotid) {
2170f1ae32a1SGerd Hoffmann                 event.ccode = xhci_address_slot(xhci, slotid, trb.parameter,
2171f1ae32a1SGerd Hoffmann                                                 trb.control & TRB_CR_BSR);
2172f1ae32a1SGerd Hoffmann             }
2173f1ae32a1SGerd Hoffmann             break;
2174f1ae32a1SGerd Hoffmann         case CR_CONFIGURE_ENDPOINT:
2175f1ae32a1SGerd Hoffmann             slotid = xhci_get_slot(xhci, &event, &trb);
2176f1ae32a1SGerd Hoffmann             if (slotid) {
2177f1ae32a1SGerd Hoffmann                 event.ccode = xhci_configure_slot(xhci, slotid, trb.parameter,
2178f1ae32a1SGerd Hoffmann                                                   trb.control & TRB_CR_DC);
2179f1ae32a1SGerd Hoffmann             }
2180f1ae32a1SGerd Hoffmann             break;
2181f1ae32a1SGerd Hoffmann         case CR_EVALUATE_CONTEXT:
2182f1ae32a1SGerd Hoffmann             slotid = xhci_get_slot(xhci, &event, &trb);
2183f1ae32a1SGerd Hoffmann             if (slotid) {
2184f1ae32a1SGerd Hoffmann                 event.ccode = xhci_evaluate_slot(xhci, slotid, trb.parameter);
2185f1ae32a1SGerd Hoffmann             }
2186f1ae32a1SGerd Hoffmann             break;
2187f1ae32a1SGerd Hoffmann         case CR_STOP_ENDPOINT:
2188f1ae32a1SGerd Hoffmann             slotid = xhci_get_slot(xhci, &event, &trb);
2189f1ae32a1SGerd Hoffmann             if (slotid) {
2190f1ae32a1SGerd Hoffmann                 unsigned int epid = (trb.control >> TRB_CR_EPID_SHIFT)
2191f1ae32a1SGerd Hoffmann                     & TRB_CR_EPID_MASK;
2192f1ae32a1SGerd Hoffmann                 event.ccode = xhci_stop_ep(xhci, slotid, epid);
2193f1ae32a1SGerd Hoffmann             }
2194f1ae32a1SGerd Hoffmann             break;
2195f1ae32a1SGerd Hoffmann         case CR_RESET_ENDPOINT:
2196f1ae32a1SGerd Hoffmann             slotid = xhci_get_slot(xhci, &event, &trb);
2197f1ae32a1SGerd Hoffmann             if (slotid) {
2198f1ae32a1SGerd Hoffmann                 unsigned int epid = (trb.control >> TRB_CR_EPID_SHIFT)
2199f1ae32a1SGerd Hoffmann                     & TRB_CR_EPID_MASK;
2200f1ae32a1SGerd Hoffmann                 event.ccode = xhci_reset_ep(xhci, slotid, epid);
2201f1ae32a1SGerd Hoffmann             }
2202f1ae32a1SGerd Hoffmann             break;
2203f1ae32a1SGerd Hoffmann         case CR_SET_TR_DEQUEUE:
2204f1ae32a1SGerd Hoffmann             slotid = xhci_get_slot(xhci, &event, &trb);
2205f1ae32a1SGerd Hoffmann             if (slotid) {
2206f1ae32a1SGerd Hoffmann                 unsigned int epid = (trb.control >> TRB_CR_EPID_SHIFT)
2207f1ae32a1SGerd Hoffmann                     & TRB_CR_EPID_MASK;
2208f1ae32a1SGerd Hoffmann                 event.ccode = xhci_set_ep_dequeue(xhci, slotid, epid,
2209f1ae32a1SGerd Hoffmann                                                   trb.parameter);
2210f1ae32a1SGerd Hoffmann             }
2211f1ae32a1SGerd Hoffmann             break;
2212f1ae32a1SGerd Hoffmann         case CR_RESET_DEVICE:
2213f1ae32a1SGerd Hoffmann             slotid = xhci_get_slot(xhci, &event, &trb);
2214f1ae32a1SGerd Hoffmann             if (slotid) {
2215f1ae32a1SGerd Hoffmann                 event.ccode = xhci_reset_slot(xhci, slotid);
2216f1ae32a1SGerd Hoffmann             }
2217f1ae32a1SGerd Hoffmann             break;
2218f1ae32a1SGerd Hoffmann         case CR_GET_PORT_BANDWIDTH:
2219f1ae32a1SGerd Hoffmann             event.ccode = xhci_get_port_bandwidth(xhci, trb.parameter);
2220f1ae32a1SGerd Hoffmann             break;
2221f1ae32a1SGerd Hoffmann         case CR_VENDOR_VIA_CHALLENGE_RESPONSE:
222259a70ccdSDavid Gibson             xhci_via_challenge(xhci, trb.parameter);
2223f1ae32a1SGerd Hoffmann             break;
2224f1ae32a1SGerd Hoffmann         case CR_VENDOR_NEC_FIRMWARE_REVISION:
2225f1ae32a1SGerd Hoffmann             event.type = 48; /* NEC reply */
2226f1ae32a1SGerd Hoffmann             event.length = 0x3025;
2227f1ae32a1SGerd Hoffmann             break;
2228f1ae32a1SGerd Hoffmann         case CR_VENDOR_NEC_CHALLENGE_RESPONSE:
2229f1ae32a1SGerd Hoffmann         {
2230f1ae32a1SGerd Hoffmann             uint32_t chi = trb.parameter >> 32;
2231f1ae32a1SGerd Hoffmann             uint32_t clo = trb.parameter;
2232f1ae32a1SGerd Hoffmann             uint32_t val = xhci_nec_challenge(chi, clo);
2233f1ae32a1SGerd Hoffmann             event.length = val & 0xFFFF;
2234f1ae32a1SGerd Hoffmann             event.epid = val >> 16;
2235f1ae32a1SGerd Hoffmann             slotid = val >> 24;
2236f1ae32a1SGerd Hoffmann             event.type = 48; /* NEC reply */
2237f1ae32a1SGerd Hoffmann         }
2238f1ae32a1SGerd Hoffmann         break;
2239f1ae32a1SGerd Hoffmann         default:
2240f1ae32a1SGerd Hoffmann             fprintf(stderr, "xhci: unimplemented command %d\n", type);
2241f1ae32a1SGerd Hoffmann             event.ccode = CC_TRB_ERROR;
2242f1ae32a1SGerd Hoffmann             break;
2243f1ae32a1SGerd Hoffmann         }
2244f1ae32a1SGerd Hoffmann         event.slotid = slotid;
2245f1ae32a1SGerd Hoffmann         xhci_event(xhci, &event);
2246f1ae32a1SGerd Hoffmann     }
2247f1ae32a1SGerd Hoffmann }
2248f1ae32a1SGerd Hoffmann 
2249f1ae32a1SGerd Hoffmann static void xhci_update_port(XHCIState *xhci, XHCIPort *port, int is_detach)
2250f1ae32a1SGerd Hoffmann {
2251f1ae32a1SGerd Hoffmann     int nr = port->port.index + 1;
2252f1ae32a1SGerd Hoffmann 
2253f1ae32a1SGerd Hoffmann     port->portsc = PORTSC_PP;
2254f1ae32a1SGerd Hoffmann     if (port->port.dev && port->port.dev->attached && !is_detach) {
2255f1ae32a1SGerd Hoffmann         port->portsc |= PORTSC_CCS;
2256f1ae32a1SGerd Hoffmann         switch (port->port.dev->speed) {
2257f1ae32a1SGerd Hoffmann         case USB_SPEED_LOW:
2258f1ae32a1SGerd Hoffmann             port->portsc |= PORTSC_SPEED_LOW;
2259f1ae32a1SGerd Hoffmann             break;
2260f1ae32a1SGerd Hoffmann         case USB_SPEED_FULL:
2261f1ae32a1SGerd Hoffmann             port->portsc |= PORTSC_SPEED_FULL;
2262f1ae32a1SGerd Hoffmann             break;
2263f1ae32a1SGerd Hoffmann         case USB_SPEED_HIGH:
2264f1ae32a1SGerd Hoffmann             port->portsc |= PORTSC_SPEED_HIGH;
2265f1ae32a1SGerd Hoffmann             break;
2266f1ae32a1SGerd Hoffmann         }
2267f1ae32a1SGerd Hoffmann     }
2268f1ae32a1SGerd Hoffmann 
2269f1ae32a1SGerd Hoffmann     if (xhci_running(xhci)) {
2270f1ae32a1SGerd Hoffmann         port->portsc |= PORTSC_CSC;
2271f1ae32a1SGerd Hoffmann         XHCIEvent ev = { ER_PORT_STATUS_CHANGE, CC_SUCCESS, nr << 24};
2272f1ae32a1SGerd Hoffmann         xhci_event(xhci, &ev);
2273f1ae32a1SGerd Hoffmann         DPRINTF("xhci: port change event for port %d\n", nr);
2274f1ae32a1SGerd Hoffmann     }
2275f1ae32a1SGerd Hoffmann }
2276f1ae32a1SGerd Hoffmann 
227764619739SJan Kiszka static void xhci_reset(DeviceState *dev)
2278f1ae32a1SGerd Hoffmann {
227964619739SJan Kiszka     XHCIState *xhci = DO_UPCAST(XHCIState, pci_dev.qdev, dev);
2280f1ae32a1SGerd Hoffmann     int i;
2281f1ae32a1SGerd Hoffmann 
22822d754a10SGerd Hoffmann     trace_usb_xhci_reset();
2283f1ae32a1SGerd Hoffmann     if (!(xhci->usbsts & USBSTS_HCH)) {
2284f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: reset while running!\n");
2285f1ae32a1SGerd Hoffmann     }
2286f1ae32a1SGerd Hoffmann 
2287f1ae32a1SGerd Hoffmann     xhci->usbcmd = 0;
2288f1ae32a1SGerd Hoffmann     xhci->usbsts = USBSTS_HCH;
2289f1ae32a1SGerd Hoffmann     xhci->dnctrl = 0;
2290f1ae32a1SGerd Hoffmann     xhci->crcr_low = 0;
2291f1ae32a1SGerd Hoffmann     xhci->crcr_high = 0;
2292f1ae32a1SGerd Hoffmann     xhci->dcbaap_low = 0;
2293f1ae32a1SGerd Hoffmann     xhci->dcbaap_high = 0;
2294f1ae32a1SGerd Hoffmann     xhci->config = 0;
2295f1ae32a1SGerd Hoffmann     xhci->devaddr = 2;
2296f1ae32a1SGerd Hoffmann 
2297f1ae32a1SGerd Hoffmann     for (i = 0; i < MAXSLOTS; i++) {
2298f1ae32a1SGerd Hoffmann         xhci_disable_slot(xhci, i+1);
2299f1ae32a1SGerd Hoffmann     }
2300f1ae32a1SGerd Hoffmann 
2301f1ae32a1SGerd Hoffmann     for (i = 0; i < MAXPORTS; i++) {
2302f1ae32a1SGerd Hoffmann         xhci_update_port(xhci, xhci->ports + i, 0);
2303f1ae32a1SGerd Hoffmann     }
2304f1ae32a1SGerd Hoffmann 
2305f1ae32a1SGerd Hoffmann     xhci->mfindex = 0;
2306f1ae32a1SGerd Hoffmann     xhci->iman = 0;
2307f1ae32a1SGerd Hoffmann     xhci->imod = 0;
2308f1ae32a1SGerd Hoffmann     xhci->erstsz = 0;
2309f1ae32a1SGerd Hoffmann     xhci->erstba_low = 0;
2310f1ae32a1SGerd Hoffmann     xhci->erstba_high = 0;
2311f1ae32a1SGerd Hoffmann     xhci->erdp_low = 0;
2312f1ae32a1SGerd Hoffmann     xhci->erdp_high = 0;
2313f1ae32a1SGerd Hoffmann 
2314f1ae32a1SGerd Hoffmann     xhci->er_ep_idx = 0;
2315f1ae32a1SGerd Hoffmann     xhci->er_pcs = 1;
2316f1ae32a1SGerd Hoffmann     xhci->er_full = 0;
2317f1ae32a1SGerd Hoffmann     xhci->ev_buffer_put = 0;
2318f1ae32a1SGerd Hoffmann     xhci->ev_buffer_get = 0;
2319f1ae32a1SGerd Hoffmann }
2320f1ae32a1SGerd Hoffmann 
2321f1ae32a1SGerd Hoffmann static uint32_t xhci_cap_read(XHCIState *xhci, uint32_t reg)
2322f1ae32a1SGerd Hoffmann {
23232d754a10SGerd Hoffmann     uint32_t ret;
2324f1ae32a1SGerd Hoffmann 
2325f1ae32a1SGerd Hoffmann     switch (reg) {
2326f1ae32a1SGerd Hoffmann     case 0x00: /* HCIVERSION, CAPLENGTH */
23272d754a10SGerd Hoffmann         ret = 0x01000000 | LEN_CAP;
23282d754a10SGerd Hoffmann         break;
2329f1ae32a1SGerd Hoffmann     case 0x04: /* HCSPARAMS 1 */
23302d754a10SGerd Hoffmann         ret = (MAXPORTS<<24) | (MAXINTRS<<8) | MAXSLOTS;
23312d754a10SGerd Hoffmann         break;
2332f1ae32a1SGerd Hoffmann     case 0x08: /* HCSPARAMS 2 */
23332d754a10SGerd Hoffmann         ret = 0x0000000f;
23342d754a10SGerd Hoffmann         break;
2335f1ae32a1SGerd Hoffmann     case 0x0c: /* HCSPARAMS 3 */
23362d754a10SGerd Hoffmann         ret = 0x00000000;
23372d754a10SGerd Hoffmann         break;
2338f1ae32a1SGerd Hoffmann     case 0x10: /* HCCPARAMS */
23392d754a10SGerd Hoffmann         if (sizeof(dma_addr_t) == 4) {
23402d754a10SGerd Hoffmann             ret = 0x00081000;
23412d754a10SGerd Hoffmann         } else {
23422d754a10SGerd Hoffmann             ret = 0x00081001;
23432d754a10SGerd Hoffmann         }
23442d754a10SGerd Hoffmann         break;
2345f1ae32a1SGerd Hoffmann     case 0x14: /* DBOFF */
23462d754a10SGerd Hoffmann         ret = OFF_DOORBELL;
23472d754a10SGerd Hoffmann         break;
2348f1ae32a1SGerd Hoffmann     case 0x18: /* RTSOFF */
23492d754a10SGerd Hoffmann         ret = OFF_RUNTIME;
23502d754a10SGerd Hoffmann         break;
2351f1ae32a1SGerd Hoffmann 
2352f1ae32a1SGerd Hoffmann     /* extended capabilities */
2353f1ae32a1SGerd Hoffmann     case 0x20: /* Supported Protocol:00 */
23542d754a10SGerd Hoffmann         ret = 0x02000402; /* USB 2.0 */
23552d754a10SGerd Hoffmann         break;
2356f1ae32a1SGerd Hoffmann     case 0x24: /* Supported Protocol:04 */
23572d754a10SGerd Hoffmann         ret = 0x20425455; /* "USB " */
23582d754a10SGerd Hoffmann         break;
2359f1ae32a1SGerd Hoffmann     case 0x28: /* Supported Protocol:08 */
23602d754a10SGerd Hoffmann         ret = 0x00000001 | (USB2_PORTS<<8);
23612d754a10SGerd Hoffmann         break;
2362f1ae32a1SGerd Hoffmann     case 0x2c: /* Supported Protocol:0c */
23632d754a10SGerd Hoffmann         ret = 0x00000000; /* reserved */
23642d754a10SGerd Hoffmann         break;
2365f1ae32a1SGerd Hoffmann     case 0x30: /* Supported Protocol:00 */
23662d754a10SGerd Hoffmann         ret = 0x03000002; /* USB 3.0 */
23672d754a10SGerd Hoffmann         break;
2368f1ae32a1SGerd Hoffmann     case 0x34: /* Supported Protocol:04 */
23692d754a10SGerd Hoffmann         ret = 0x20425455; /* "USB " */
23702d754a10SGerd Hoffmann         break;
2371f1ae32a1SGerd Hoffmann     case 0x38: /* Supported Protocol:08 */
23722d754a10SGerd Hoffmann         ret = 0x00000000 | (USB2_PORTS+1) | (USB3_PORTS<<8);
23732d754a10SGerd Hoffmann         break;
2374f1ae32a1SGerd Hoffmann     case 0x3c: /* Supported Protocol:0c */
23752d754a10SGerd Hoffmann         ret = 0x00000000; /* reserved */
23762d754a10SGerd Hoffmann         break;
2377f1ae32a1SGerd Hoffmann     default:
2378f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_cap_read: reg %d unimplemented\n", reg);
23792d754a10SGerd Hoffmann         ret = 0;
2380f1ae32a1SGerd Hoffmann     }
23812d754a10SGerd Hoffmann 
23822d754a10SGerd Hoffmann     trace_usb_xhci_cap_read(reg, ret);
23832d754a10SGerd Hoffmann     return ret;
2384f1ae32a1SGerd Hoffmann }
2385f1ae32a1SGerd Hoffmann 
2386f1ae32a1SGerd Hoffmann static uint32_t xhci_port_read(XHCIState *xhci, uint32_t reg)
2387f1ae32a1SGerd Hoffmann {
2388f1ae32a1SGerd Hoffmann     uint32_t port = reg >> 4;
23892d754a10SGerd Hoffmann     uint32_t ret;
23902d754a10SGerd Hoffmann 
2391f1ae32a1SGerd Hoffmann     if (port >= MAXPORTS) {
2392f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_port_read: port %d out of bounds\n", port);
23932d754a10SGerd Hoffmann         ret = 0;
23942d754a10SGerd Hoffmann         goto out;
2395f1ae32a1SGerd Hoffmann     }
2396f1ae32a1SGerd Hoffmann 
2397f1ae32a1SGerd Hoffmann     switch (reg & 0xf) {
2398f1ae32a1SGerd Hoffmann     case 0x00: /* PORTSC */
23992d754a10SGerd Hoffmann         ret = xhci->ports[port].portsc;
24002d754a10SGerd Hoffmann         break;
2401f1ae32a1SGerd Hoffmann     case 0x04: /* PORTPMSC */
2402f1ae32a1SGerd Hoffmann     case 0x08: /* PORTLI */
24032d754a10SGerd Hoffmann         ret = 0;
24042d754a10SGerd Hoffmann         break;
2405f1ae32a1SGerd Hoffmann     case 0x0c: /* reserved */
2406f1ae32a1SGerd Hoffmann     default:
2407f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_port_read (port %d): reg 0x%x unimplemented\n",
2408f1ae32a1SGerd Hoffmann                 port, reg);
24092d754a10SGerd Hoffmann         ret = 0;
2410f1ae32a1SGerd Hoffmann     }
24112d754a10SGerd Hoffmann 
24122d754a10SGerd Hoffmann out:
24132d754a10SGerd Hoffmann     trace_usb_xhci_port_read(port, reg & 0x0f, ret);
24142d754a10SGerd Hoffmann     return ret;
2415f1ae32a1SGerd Hoffmann }
2416f1ae32a1SGerd Hoffmann 
2417f1ae32a1SGerd Hoffmann static void xhci_port_write(XHCIState *xhci, uint32_t reg, uint32_t val)
2418f1ae32a1SGerd Hoffmann {
2419f1ae32a1SGerd Hoffmann     uint32_t port = reg >> 4;
2420f1ae32a1SGerd Hoffmann     uint32_t portsc;
2421f1ae32a1SGerd Hoffmann 
24222d754a10SGerd Hoffmann     trace_usb_xhci_port_write(port, reg & 0x0f, val);
24232d754a10SGerd Hoffmann 
2424f1ae32a1SGerd Hoffmann     if (port >= MAXPORTS) {
2425f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_port_read: port %d out of bounds\n", port);
2426f1ae32a1SGerd Hoffmann         return;
2427f1ae32a1SGerd Hoffmann     }
2428f1ae32a1SGerd Hoffmann 
2429f1ae32a1SGerd Hoffmann     switch (reg & 0xf) {
2430f1ae32a1SGerd Hoffmann     case 0x00: /* PORTSC */
2431f1ae32a1SGerd Hoffmann         portsc = xhci->ports[port].portsc;
2432f1ae32a1SGerd Hoffmann         /* write-1-to-clear bits*/
2433f1ae32a1SGerd Hoffmann         portsc &= ~(val & (PORTSC_CSC|PORTSC_PEC|PORTSC_WRC|PORTSC_OCC|
2434f1ae32a1SGerd Hoffmann                            PORTSC_PRC|PORTSC_PLC|PORTSC_CEC));
2435f1ae32a1SGerd Hoffmann         if (val & PORTSC_LWS) {
2436f1ae32a1SGerd Hoffmann             /* overwrite PLS only when LWS=1 */
2437f1ae32a1SGerd Hoffmann             portsc &= ~(PORTSC_PLS_MASK << PORTSC_PLS_SHIFT);
2438f1ae32a1SGerd Hoffmann             portsc |= val & (PORTSC_PLS_MASK << PORTSC_PLS_SHIFT);
2439f1ae32a1SGerd Hoffmann         }
2440f1ae32a1SGerd Hoffmann         /* read/write bits */
2441f1ae32a1SGerd Hoffmann         portsc &= ~(PORTSC_PP|PORTSC_WCE|PORTSC_WDE|PORTSC_WOE);
2442f1ae32a1SGerd Hoffmann         portsc |= (val & (PORTSC_PP|PORTSC_WCE|PORTSC_WDE|PORTSC_WOE));
2443f1ae32a1SGerd Hoffmann         /* write-1-to-start bits */
2444f1ae32a1SGerd Hoffmann         if (val & PORTSC_PR) {
2445f1ae32a1SGerd Hoffmann             DPRINTF("xhci: port %d reset\n", port);
2446f1ae32a1SGerd Hoffmann             usb_device_reset(xhci->ports[port].port.dev);
2447f1ae32a1SGerd Hoffmann             portsc |= PORTSC_PRC | PORTSC_PED;
2448f1ae32a1SGerd Hoffmann         }
2449f1ae32a1SGerd Hoffmann         xhci->ports[port].portsc = portsc;
2450f1ae32a1SGerd Hoffmann         break;
2451f1ae32a1SGerd Hoffmann     case 0x04: /* PORTPMSC */
2452f1ae32a1SGerd Hoffmann     case 0x08: /* PORTLI */
2453f1ae32a1SGerd Hoffmann     default:
2454f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_port_write (port %d): reg 0x%x unimplemented\n",
2455f1ae32a1SGerd Hoffmann                 port, reg);
2456f1ae32a1SGerd Hoffmann     }
2457f1ae32a1SGerd Hoffmann }
2458f1ae32a1SGerd Hoffmann 
2459f1ae32a1SGerd Hoffmann static uint32_t xhci_oper_read(XHCIState *xhci, uint32_t reg)
2460f1ae32a1SGerd Hoffmann {
24612d754a10SGerd Hoffmann     uint32_t ret;
2462f1ae32a1SGerd Hoffmann 
2463f1ae32a1SGerd Hoffmann     if (reg >= 0x400) {
2464f1ae32a1SGerd Hoffmann         return xhci_port_read(xhci, reg - 0x400);
2465f1ae32a1SGerd Hoffmann     }
2466f1ae32a1SGerd Hoffmann 
2467f1ae32a1SGerd Hoffmann     switch (reg) {
2468f1ae32a1SGerd Hoffmann     case 0x00: /* USBCMD */
24692d754a10SGerd Hoffmann         ret = xhci->usbcmd;
24702d754a10SGerd Hoffmann         break;
2471f1ae32a1SGerd Hoffmann     case 0x04: /* USBSTS */
24722d754a10SGerd Hoffmann         ret = xhci->usbsts;
24732d754a10SGerd Hoffmann         break;
2474f1ae32a1SGerd Hoffmann     case 0x08: /* PAGESIZE */
24752d754a10SGerd Hoffmann         ret = 1; /* 4KiB */
24762d754a10SGerd Hoffmann         break;
2477f1ae32a1SGerd Hoffmann     case 0x14: /* DNCTRL */
24782d754a10SGerd Hoffmann         ret = xhci->dnctrl;
24792d754a10SGerd Hoffmann         break;
2480f1ae32a1SGerd Hoffmann     case 0x18: /* CRCR low */
24812d754a10SGerd Hoffmann         ret = xhci->crcr_low & ~0xe;
24822d754a10SGerd Hoffmann         break;
2483f1ae32a1SGerd Hoffmann     case 0x1c: /* CRCR high */
24842d754a10SGerd Hoffmann         ret = xhci->crcr_high;
24852d754a10SGerd Hoffmann         break;
2486f1ae32a1SGerd Hoffmann     case 0x30: /* DCBAAP low */
24872d754a10SGerd Hoffmann         ret = xhci->dcbaap_low;
24882d754a10SGerd Hoffmann         break;
2489f1ae32a1SGerd Hoffmann     case 0x34: /* DCBAAP high */
24902d754a10SGerd Hoffmann         ret = xhci->dcbaap_high;
24912d754a10SGerd Hoffmann         break;
2492f1ae32a1SGerd Hoffmann     case 0x38: /* CONFIG */
24932d754a10SGerd Hoffmann         ret = xhci->config;
24942d754a10SGerd Hoffmann         break;
2495f1ae32a1SGerd Hoffmann     default:
2496f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_oper_read: reg 0x%x unimplemented\n", reg);
24972d754a10SGerd Hoffmann         ret = 0;
2498f1ae32a1SGerd Hoffmann     }
24992d754a10SGerd Hoffmann 
25002d754a10SGerd Hoffmann     trace_usb_xhci_oper_read(reg, ret);
25012d754a10SGerd Hoffmann     return ret;
2502f1ae32a1SGerd Hoffmann }
2503f1ae32a1SGerd Hoffmann 
2504f1ae32a1SGerd Hoffmann static void xhci_oper_write(XHCIState *xhci, uint32_t reg, uint32_t val)
2505f1ae32a1SGerd Hoffmann {
2506f1ae32a1SGerd Hoffmann     if (reg >= 0x400) {
2507f1ae32a1SGerd Hoffmann         xhci_port_write(xhci, reg - 0x400, val);
2508f1ae32a1SGerd Hoffmann         return;
2509f1ae32a1SGerd Hoffmann     }
2510f1ae32a1SGerd Hoffmann 
25112d754a10SGerd Hoffmann     trace_usb_xhci_oper_write(reg, val);
25122d754a10SGerd Hoffmann 
2513f1ae32a1SGerd Hoffmann     switch (reg) {
2514f1ae32a1SGerd Hoffmann     case 0x00: /* USBCMD */
2515f1ae32a1SGerd Hoffmann         if ((val & USBCMD_RS) && !(xhci->usbcmd & USBCMD_RS)) {
2516f1ae32a1SGerd Hoffmann             xhci_run(xhci);
2517f1ae32a1SGerd Hoffmann         } else if (!(val & USBCMD_RS) && (xhci->usbcmd & USBCMD_RS)) {
2518f1ae32a1SGerd Hoffmann             xhci_stop(xhci);
2519f1ae32a1SGerd Hoffmann         }
2520f1ae32a1SGerd Hoffmann         xhci->usbcmd = val & 0xc0f;
2521f1ae32a1SGerd Hoffmann         if (val & USBCMD_HCRST) {
252264619739SJan Kiszka             xhci_reset(&xhci->pci_dev.qdev);
2523f1ae32a1SGerd Hoffmann         }
2524f1ae32a1SGerd Hoffmann         xhci_irq_update(xhci);
2525f1ae32a1SGerd Hoffmann         break;
2526f1ae32a1SGerd Hoffmann 
2527f1ae32a1SGerd Hoffmann     case 0x04: /* USBSTS */
2528f1ae32a1SGerd Hoffmann         /* these bits are write-1-to-clear */
2529f1ae32a1SGerd Hoffmann         xhci->usbsts &= ~(val & (USBSTS_HSE|USBSTS_EINT|USBSTS_PCD|USBSTS_SRE));
2530f1ae32a1SGerd Hoffmann         xhci_irq_update(xhci);
2531f1ae32a1SGerd Hoffmann         break;
2532f1ae32a1SGerd Hoffmann 
2533f1ae32a1SGerd Hoffmann     case 0x14: /* DNCTRL */
2534f1ae32a1SGerd Hoffmann         xhci->dnctrl = val & 0xffff;
2535f1ae32a1SGerd Hoffmann         break;
2536f1ae32a1SGerd Hoffmann     case 0x18: /* CRCR low */
2537f1ae32a1SGerd Hoffmann         xhci->crcr_low = (val & 0xffffffcf) | (xhci->crcr_low & CRCR_CRR);
2538f1ae32a1SGerd Hoffmann         break;
2539f1ae32a1SGerd Hoffmann     case 0x1c: /* CRCR high */
2540f1ae32a1SGerd Hoffmann         xhci->crcr_high = val;
2541f1ae32a1SGerd Hoffmann         if (xhci->crcr_low & (CRCR_CA|CRCR_CS) && (xhci->crcr_low & CRCR_CRR)) {
2542f1ae32a1SGerd Hoffmann             XHCIEvent event = {ER_COMMAND_COMPLETE, CC_COMMAND_RING_STOPPED};
2543f1ae32a1SGerd Hoffmann             xhci->crcr_low &= ~CRCR_CRR;
2544f1ae32a1SGerd Hoffmann             xhci_event(xhci, &event);
2545f1ae32a1SGerd Hoffmann             DPRINTF("xhci: command ring stopped (CRCR=%08x)\n", xhci->crcr_low);
2546f1ae32a1SGerd Hoffmann         } else {
254759a70ccdSDavid Gibson             dma_addr_t base = xhci_addr64(xhci->crcr_low & ~0x3f, val);
2548f1ae32a1SGerd Hoffmann             xhci_ring_init(xhci, &xhci->cmd_ring, base);
2549f1ae32a1SGerd Hoffmann         }
2550f1ae32a1SGerd Hoffmann         xhci->crcr_low &= ~(CRCR_CA | CRCR_CS);
2551f1ae32a1SGerd Hoffmann         break;
2552f1ae32a1SGerd Hoffmann     case 0x30: /* DCBAAP low */
2553f1ae32a1SGerd Hoffmann         xhci->dcbaap_low = val & 0xffffffc0;
2554f1ae32a1SGerd Hoffmann         break;
2555f1ae32a1SGerd Hoffmann     case 0x34: /* DCBAAP high */
2556f1ae32a1SGerd Hoffmann         xhci->dcbaap_high = val;
2557f1ae32a1SGerd Hoffmann         break;
2558f1ae32a1SGerd Hoffmann     case 0x38: /* CONFIG */
2559f1ae32a1SGerd Hoffmann         xhci->config = val & 0xff;
2560f1ae32a1SGerd Hoffmann         break;
2561f1ae32a1SGerd Hoffmann     default:
2562f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_oper_write: reg 0x%x unimplemented\n", reg);
2563f1ae32a1SGerd Hoffmann     }
2564f1ae32a1SGerd Hoffmann }
2565f1ae32a1SGerd Hoffmann 
2566f1ae32a1SGerd Hoffmann static uint32_t xhci_runtime_read(XHCIState *xhci, uint32_t reg)
2567f1ae32a1SGerd Hoffmann {
25682d754a10SGerd Hoffmann     uint32_t ret;
2569f1ae32a1SGerd Hoffmann 
2570f1ae32a1SGerd Hoffmann     switch (reg) {
2571f1ae32a1SGerd Hoffmann     case 0x00: /* MFINDEX */
2572f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_runtime_read: MFINDEX not yet implemented\n");
25732d754a10SGerd Hoffmann         ret = xhci->mfindex;
25742d754a10SGerd Hoffmann         break;
2575f1ae32a1SGerd Hoffmann     case 0x20: /* IMAN */
25762d754a10SGerd Hoffmann         ret = xhci->iman;
25772d754a10SGerd Hoffmann         break;
2578f1ae32a1SGerd Hoffmann     case 0x24: /* IMOD */
25792d754a10SGerd Hoffmann         ret = xhci->imod;
25802d754a10SGerd Hoffmann         break;
2581f1ae32a1SGerd Hoffmann     case 0x28: /* ERSTSZ */
25822d754a10SGerd Hoffmann         ret = xhci->erstsz;
25832d754a10SGerd Hoffmann         break;
2584f1ae32a1SGerd Hoffmann     case 0x30: /* ERSTBA low */
25852d754a10SGerd Hoffmann         ret = xhci->erstba_low;
25862d754a10SGerd Hoffmann         break;
2587f1ae32a1SGerd Hoffmann     case 0x34: /* ERSTBA high */
25882d754a10SGerd Hoffmann         ret = xhci->erstba_high;
25892d754a10SGerd Hoffmann         break;
2590f1ae32a1SGerd Hoffmann     case 0x38: /* ERDP low */
25912d754a10SGerd Hoffmann         ret = xhci->erdp_low;
25922d754a10SGerd Hoffmann         break;
2593f1ae32a1SGerd Hoffmann     case 0x3c: /* ERDP high */
25942d754a10SGerd Hoffmann         ret = xhci->erdp_high;
25952d754a10SGerd Hoffmann         break;
2596f1ae32a1SGerd Hoffmann     default:
2597f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_runtime_read: reg 0x%x unimplemented\n", reg);
25982d754a10SGerd Hoffmann         ret = 0;
2599f1ae32a1SGerd Hoffmann     }
26002d754a10SGerd Hoffmann 
26012d754a10SGerd Hoffmann     trace_usb_xhci_runtime_read(reg, ret);
26022d754a10SGerd Hoffmann     return ret;
2603f1ae32a1SGerd Hoffmann }
2604f1ae32a1SGerd Hoffmann 
2605f1ae32a1SGerd Hoffmann static void xhci_runtime_write(XHCIState *xhci, uint32_t reg, uint32_t val)
2606f1ae32a1SGerd Hoffmann {
26072d754a10SGerd Hoffmann     trace_usb_xhci_runtime_read(reg, val);
2608f1ae32a1SGerd Hoffmann 
2609f1ae32a1SGerd Hoffmann     switch (reg) {
2610f1ae32a1SGerd Hoffmann     case 0x20: /* IMAN */
2611f1ae32a1SGerd Hoffmann         if (val & IMAN_IP) {
2612f1ae32a1SGerd Hoffmann             xhci->iman &= ~IMAN_IP;
2613f1ae32a1SGerd Hoffmann         }
2614f1ae32a1SGerd Hoffmann         xhci->iman &= ~IMAN_IE;
2615f1ae32a1SGerd Hoffmann         xhci->iman |= val & IMAN_IE;
2616f1ae32a1SGerd Hoffmann         xhci_irq_update(xhci);
2617f1ae32a1SGerd Hoffmann         break;
2618f1ae32a1SGerd Hoffmann     case 0x24: /* IMOD */
2619f1ae32a1SGerd Hoffmann         xhci->imod = val;
2620f1ae32a1SGerd Hoffmann         break;
2621f1ae32a1SGerd Hoffmann     case 0x28: /* ERSTSZ */
2622f1ae32a1SGerd Hoffmann         xhci->erstsz = val & 0xffff;
2623f1ae32a1SGerd Hoffmann         break;
2624f1ae32a1SGerd Hoffmann     case 0x30: /* ERSTBA low */
2625f1ae32a1SGerd Hoffmann         /* XXX NEC driver bug: it doesn't align this to 64 bytes
2626f1ae32a1SGerd Hoffmann         xhci->erstba_low = val & 0xffffffc0; */
2627f1ae32a1SGerd Hoffmann         xhci->erstba_low = val & 0xfffffff0;
2628f1ae32a1SGerd Hoffmann         break;
2629f1ae32a1SGerd Hoffmann     case 0x34: /* ERSTBA high */
2630f1ae32a1SGerd Hoffmann         xhci->erstba_high = val;
2631f1ae32a1SGerd Hoffmann         xhci_er_reset(xhci);
2632f1ae32a1SGerd Hoffmann         break;
2633f1ae32a1SGerd Hoffmann     case 0x38: /* ERDP low */
2634f1ae32a1SGerd Hoffmann         if (val & ERDP_EHB) {
2635f1ae32a1SGerd Hoffmann             xhci->erdp_low &= ~ERDP_EHB;
2636f1ae32a1SGerd Hoffmann         }
2637f1ae32a1SGerd Hoffmann         xhci->erdp_low = (val & ~ERDP_EHB) | (xhci->erdp_low & ERDP_EHB);
2638f1ae32a1SGerd Hoffmann         break;
2639f1ae32a1SGerd Hoffmann     case 0x3c: /* ERDP high */
2640f1ae32a1SGerd Hoffmann         xhci->erdp_high = val;
2641f1ae32a1SGerd Hoffmann         xhci_events_update(xhci);
2642f1ae32a1SGerd Hoffmann         break;
2643f1ae32a1SGerd Hoffmann     default:
2644f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_oper_write: reg 0x%x unimplemented\n", reg);
2645f1ae32a1SGerd Hoffmann     }
2646f1ae32a1SGerd Hoffmann }
2647f1ae32a1SGerd Hoffmann 
2648f1ae32a1SGerd Hoffmann static uint32_t xhci_doorbell_read(XHCIState *xhci, uint32_t reg)
2649f1ae32a1SGerd Hoffmann {
2650f1ae32a1SGerd Hoffmann     /* doorbells always read as 0 */
26512d754a10SGerd Hoffmann     trace_usb_xhci_doorbell_read(reg, 0);
2652f1ae32a1SGerd Hoffmann     return 0;
2653f1ae32a1SGerd Hoffmann }
2654f1ae32a1SGerd Hoffmann 
2655f1ae32a1SGerd Hoffmann static void xhci_doorbell_write(XHCIState *xhci, uint32_t reg, uint32_t val)
2656f1ae32a1SGerd Hoffmann {
26572d754a10SGerd Hoffmann     trace_usb_xhci_doorbell_write(reg, val);
2658f1ae32a1SGerd Hoffmann 
2659f1ae32a1SGerd Hoffmann     if (!xhci_running(xhci)) {
2660f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci: wrote doorbell while xHC stopped or paused\n");
2661f1ae32a1SGerd Hoffmann         return;
2662f1ae32a1SGerd Hoffmann     }
2663f1ae32a1SGerd Hoffmann 
2664f1ae32a1SGerd Hoffmann     reg >>= 2;
2665f1ae32a1SGerd Hoffmann 
2666f1ae32a1SGerd Hoffmann     if (reg == 0) {
2667f1ae32a1SGerd Hoffmann         if (val == 0) {
2668f1ae32a1SGerd Hoffmann             xhci_process_commands(xhci);
2669f1ae32a1SGerd Hoffmann         } else {
2670f1ae32a1SGerd Hoffmann             fprintf(stderr, "xhci: bad doorbell 0 write: 0x%x\n", val);
2671f1ae32a1SGerd Hoffmann         }
2672f1ae32a1SGerd Hoffmann     } else {
2673f1ae32a1SGerd Hoffmann         if (reg > MAXSLOTS) {
2674f1ae32a1SGerd Hoffmann             fprintf(stderr, "xhci: bad doorbell %d\n", reg);
2675f1ae32a1SGerd Hoffmann         } else if (val > 31) {
2676f1ae32a1SGerd Hoffmann             fprintf(stderr, "xhci: bad doorbell %d write: 0x%x\n", reg, val);
2677f1ae32a1SGerd Hoffmann         } else {
2678f1ae32a1SGerd Hoffmann             xhci_kick_ep(xhci, reg, val);
2679f1ae32a1SGerd Hoffmann         }
2680f1ae32a1SGerd Hoffmann     }
2681f1ae32a1SGerd Hoffmann }
2682f1ae32a1SGerd Hoffmann 
2683f1ae32a1SGerd Hoffmann static uint64_t xhci_mem_read(void *ptr, target_phys_addr_t addr,
2684f1ae32a1SGerd Hoffmann                               unsigned size)
2685f1ae32a1SGerd Hoffmann {
2686f1ae32a1SGerd Hoffmann     XHCIState *xhci = ptr;
2687f1ae32a1SGerd Hoffmann 
2688f1ae32a1SGerd Hoffmann     /* Only aligned reads are allowed on xHCI */
2689f1ae32a1SGerd Hoffmann     if (addr & 3) {
2690f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_mem_read: Mis-aligned read\n");
2691f1ae32a1SGerd Hoffmann         return 0;
2692f1ae32a1SGerd Hoffmann     }
2693f1ae32a1SGerd Hoffmann 
2694f1ae32a1SGerd Hoffmann     if (addr < LEN_CAP) {
2695f1ae32a1SGerd Hoffmann         return xhci_cap_read(xhci, addr);
2696f1ae32a1SGerd Hoffmann     } else if (addr >= OFF_OPER && addr < (OFF_OPER + LEN_OPER)) {
2697f1ae32a1SGerd Hoffmann         return xhci_oper_read(xhci, addr - OFF_OPER);
2698f1ae32a1SGerd Hoffmann     } else if (addr >= OFF_RUNTIME && addr < (OFF_RUNTIME + LEN_RUNTIME)) {
2699f1ae32a1SGerd Hoffmann         return xhci_runtime_read(xhci, addr - OFF_RUNTIME);
2700f1ae32a1SGerd Hoffmann     } else if (addr >= OFF_DOORBELL && addr < (OFF_DOORBELL + LEN_DOORBELL)) {
2701f1ae32a1SGerd Hoffmann         return xhci_doorbell_read(xhci, addr - OFF_DOORBELL);
2702f1ae32a1SGerd Hoffmann     } else {
2703f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_mem_read: Bad offset %x\n", (int)addr);
2704f1ae32a1SGerd Hoffmann         return 0;
2705f1ae32a1SGerd Hoffmann     }
2706f1ae32a1SGerd Hoffmann }
2707f1ae32a1SGerd Hoffmann 
2708f1ae32a1SGerd Hoffmann static void xhci_mem_write(void *ptr, target_phys_addr_t addr,
2709f1ae32a1SGerd Hoffmann                            uint64_t val, unsigned size)
2710f1ae32a1SGerd Hoffmann {
2711f1ae32a1SGerd Hoffmann     XHCIState *xhci = ptr;
2712f1ae32a1SGerd Hoffmann 
2713f1ae32a1SGerd Hoffmann     /* Only aligned writes are allowed on xHCI */
2714f1ae32a1SGerd Hoffmann     if (addr & 3) {
2715f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_mem_write: Mis-aligned write\n");
2716f1ae32a1SGerd Hoffmann         return;
2717f1ae32a1SGerd Hoffmann     }
2718f1ae32a1SGerd Hoffmann 
2719f1ae32a1SGerd Hoffmann     if (addr >= OFF_OPER && addr < (OFF_OPER + LEN_OPER)) {
2720f1ae32a1SGerd Hoffmann         xhci_oper_write(xhci, addr - OFF_OPER, val);
2721f1ae32a1SGerd Hoffmann     } else if (addr >= OFF_RUNTIME && addr < (OFF_RUNTIME + LEN_RUNTIME)) {
2722f1ae32a1SGerd Hoffmann         xhci_runtime_write(xhci, addr - OFF_RUNTIME, val);
2723f1ae32a1SGerd Hoffmann     } else if (addr >= OFF_DOORBELL && addr < (OFF_DOORBELL + LEN_DOORBELL)) {
2724f1ae32a1SGerd Hoffmann         xhci_doorbell_write(xhci, addr - OFF_DOORBELL, val);
2725f1ae32a1SGerd Hoffmann     } else {
2726f1ae32a1SGerd Hoffmann         fprintf(stderr, "xhci_mem_write: Bad offset %x\n", (int)addr);
2727f1ae32a1SGerd Hoffmann     }
2728f1ae32a1SGerd Hoffmann }
2729f1ae32a1SGerd Hoffmann 
2730f1ae32a1SGerd Hoffmann static const MemoryRegionOps xhci_mem_ops = {
2731f1ae32a1SGerd Hoffmann     .read = xhci_mem_read,
2732f1ae32a1SGerd Hoffmann     .write = xhci_mem_write,
2733f1ae32a1SGerd Hoffmann     .valid.min_access_size = 4,
2734f1ae32a1SGerd Hoffmann     .valid.max_access_size = 4,
2735f1ae32a1SGerd Hoffmann     .endianness = DEVICE_LITTLE_ENDIAN,
2736f1ae32a1SGerd Hoffmann };
2737f1ae32a1SGerd Hoffmann 
2738f1ae32a1SGerd Hoffmann static void xhci_attach(USBPort *usbport)
2739f1ae32a1SGerd Hoffmann {
2740f1ae32a1SGerd Hoffmann     XHCIState *xhci = usbport->opaque;
2741f1ae32a1SGerd Hoffmann     XHCIPort *port = &xhci->ports[usbport->index];
2742f1ae32a1SGerd Hoffmann 
2743f1ae32a1SGerd Hoffmann     xhci_update_port(xhci, port, 0);
2744f1ae32a1SGerd Hoffmann }
2745f1ae32a1SGerd Hoffmann 
2746f1ae32a1SGerd Hoffmann static void xhci_detach(USBPort *usbport)
2747f1ae32a1SGerd Hoffmann {
2748f1ae32a1SGerd Hoffmann     XHCIState *xhci = usbport->opaque;
2749f1ae32a1SGerd Hoffmann     XHCIPort *port = &xhci->ports[usbport->index];
2750f1ae32a1SGerd Hoffmann 
2751f1ae32a1SGerd Hoffmann     xhci_update_port(xhci, port, 1);
2752f1ae32a1SGerd Hoffmann }
2753f1ae32a1SGerd Hoffmann 
2754f1ae32a1SGerd Hoffmann static void xhci_wakeup(USBPort *usbport)
2755f1ae32a1SGerd Hoffmann {
2756f1ae32a1SGerd Hoffmann     XHCIState *xhci = usbport->opaque;
2757f1ae32a1SGerd Hoffmann     XHCIPort *port = &xhci->ports[usbport->index];
2758f1ae32a1SGerd Hoffmann     int nr = port->port.index + 1;
2759f1ae32a1SGerd Hoffmann     XHCIEvent ev = { ER_PORT_STATUS_CHANGE, CC_SUCCESS, nr << 24};
2760f1ae32a1SGerd Hoffmann     uint32_t pls;
2761f1ae32a1SGerd Hoffmann 
2762f1ae32a1SGerd Hoffmann     pls = (port->portsc >> PORTSC_PLS_SHIFT) & PORTSC_PLS_MASK;
2763f1ae32a1SGerd Hoffmann     if (pls != 3) {
2764f1ae32a1SGerd Hoffmann         return;
2765f1ae32a1SGerd Hoffmann     }
2766f1ae32a1SGerd Hoffmann     port->portsc |= 0xf << PORTSC_PLS_SHIFT;
2767f1ae32a1SGerd Hoffmann     if (port->portsc & PORTSC_PLC) {
2768f1ae32a1SGerd Hoffmann         return;
2769f1ae32a1SGerd Hoffmann     }
2770f1ae32a1SGerd Hoffmann     port->portsc |= PORTSC_PLC;
2771f1ae32a1SGerd Hoffmann     xhci_event(xhci, &ev);
2772f1ae32a1SGerd Hoffmann }
2773f1ae32a1SGerd Hoffmann 
2774f1ae32a1SGerd Hoffmann static void xhci_complete(USBPort *port, USBPacket *packet)
2775f1ae32a1SGerd Hoffmann {
2776f1ae32a1SGerd Hoffmann     XHCITransfer *xfer = container_of(packet, XHCITransfer, packet);
2777f1ae32a1SGerd Hoffmann 
2778f1ae32a1SGerd Hoffmann     xhci_complete_packet(xfer, packet->result);
2779f1ae32a1SGerd Hoffmann     xhci_kick_ep(xfer->xhci, xfer->slotid, xfer->epid);
2780f1ae32a1SGerd Hoffmann }
2781f1ae32a1SGerd Hoffmann 
2782f1ae32a1SGerd Hoffmann static void xhci_child_detach(USBPort *port, USBDevice *child)
2783f1ae32a1SGerd Hoffmann {
2784f1ae32a1SGerd Hoffmann     FIXME();
2785f1ae32a1SGerd Hoffmann }
2786f1ae32a1SGerd Hoffmann 
2787f1ae32a1SGerd Hoffmann static USBPortOps xhci_port_ops = {
2788f1ae32a1SGerd Hoffmann     .attach   = xhci_attach,
2789f1ae32a1SGerd Hoffmann     .detach   = xhci_detach,
2790f1ae32a1SGerd Hoffmann     .wakeup   = xhci_wakeup,
2791f1ae32a1SGerd Hoffmann     .complete = xhci_complete,
2792f1ae32a1SGerd Hoffmann     .child_detach = xhci_child_detach,
2793f1ae32a1SGerd Hoffmann };
2794f1ae32a1SGerd Hoffmann 
2795f1ae32a1SGerd Hoffmann static int xhci_find_slotid(XHCIState *xhci, USBDevice *dev)
2796f1ae32a1SGerd Hoffmann {
2797f1ae32a1SGerd Hoffmann     XHCISlot *slot;
2798f1ae32a1SGerd Hoffmann     int slotid;
2799f1ae32a1SGerd Hoffmann 
2800f1ae32a1SGerd Hoffmann     for (slotid = 1; slotid <= MAXSLOTS; slotid++) {
2801f1ae32a1SGerd Hoffmann         slot = &xhci->slots[slotid-1];
2802f1ae32a1SGerd Hoffmann         if (slot->devaddr == dev->addr) {
2803f1ae32a1SGerd Hoffmann             return slotid;
2804f1ae32a1SGerd Hoffmann         }
2805f1ae32a1SGerd Hoffmann     }
2806f1ae32a1SGerd Hoffmann     return 0;
2807f1ae32a1SGerd Hoffmann }
2808f1ae32a1SGerd Hoffmann 
2809f1ae32a1SGerd Hoffmann static int xhci_find_epid(USBEndpoint *ep)
2810f1ae32a1SGerd Hoffmann {
2811f1ae32a1SGerd Hoffmann     if (ep->nr == 0) {
2812f1ae32a1SGerd Hoffmann         return 1;
2813f1ae32a1SGerd Hoffmann     }
2814f1ae32a1SGerd Hoffmann     if (ep->pid == USB_TOKEN_IN) {
2815f1ae32a1SGerd Hoffmann         return ep->nr * 2 + 1;
2816f1ae32a1SGerd Hoffmann     } else {
2817f1ae32a1SGerd Hoffmann         return ep->nr * 2;
2818f1ae32a1SGerd Hoffmann     }
2819f1ae32a1SGerd Hoffmann }
2820f1ae32a1SGerd Hoffmann 
2821f1ae32a1SGerd Hoffmann static void xhci_wakeup_endpoint(USBBus *bus, USBEndpoint *ep)
2822f1ae32a1SGerd Hoffmann {
2823f1ae32a1SGerd Hoffmann     XHCIState *xhci = container_of(bus, XHCIState, bus);
2824f1ae32a1SGerd Hoffmann     int slotid;
2825f1ae32a1SGerd Hoffmann 
2826f1ae32a1SGerd Hoffmann     DPRINTF("%s\n", __func__);
2827f1ae32a1SGerd Hoffmann     slotid = xhci_find_slotid(xhci, ep->dev);
2828f1ae32a1SGerd Hoffmann     if (slotid == 0 || !xhci->slots[slotid-1].enabled) {
2829f1ae32a1SGerd Hoffmann         DPRINTF("%s: oops, no slot for dev %d\n", __func__, ep->dev->addr);
2830f1ae32a1SGerd Hoffmann         return;
2831f1ae32a1SGerd Hoffmann     }
2832f1ae32a1SGerd Hoffmann     xhci_kick_ep(xhci, slotid, xhci_find_epid(ep));
2833f1ae32a1SGerd Hoffmann }
2834f1ae32a1SGerd Hoffmann 
2835f1ae32a1SGerd Hoffmann static USBBusOps xhci_bus_ops = {
2836f1ae32a1SGerd Hoffmann     .wakeup_endpoint = xhci_wakeup_endpoint,
2837f1ae32a1SGerd Hoffmann };
2838f1ae32a1SGerd Hoffmann 
2839f1ae32a1SGerd Hoffmann static void usb_xhci_init(XHCIState *xhci, DeviceState *dev)
2840f1ae32a1SGerd Hoffmann {
2841f1ae32a1SGerd Hoffmann     int i;
2842f1ae32a1SGerd Hoffmann 
2843f1ae32a1SGerd Hoffmann     xhci->usbsts = USBSTS_HCH;
2844f1ae32a1SGerd Hoffmann 
2845f1ae32a1SGerd Hoffmann     usb_bus_new(&xhci->bus, &xhci_bus_ops, &xhci->pci_dev.qdev);
2846f1ae32a1SGerd Hoffmann 
2847f1ae32a1SGerd Hoffmann     for (i = 0; i < MAXPORTS; i++) {
2848f1ae32a1SGerd Hoffmann         memset(&xhci->ports[i], 0, sizeof(xhci->ports[i]));
2849f1ae32a1SGerd Hoffmann         usb_register_port(&xhci->bus, &xhci->ports[i].port, xhci, i,
2850f1ae32a1SGerd Hoffmann                           &xhci_port_ops,
2851f1ae32a1SGerd Hoffmann                           USB_SPEED_MASK_LOW  |
2852f1ae32a1SGerd Hoffmann                           USB_SPEED_MASK_FULL |
2853f1ae32a1SGerd Hoffmann                           USB_SPEED_MASK_HIGH);
2854f1ae32a1SGerd Hoffmann     }
2855f1ae32a1SGerd Hoffmann     for (i = 0; i < MAXSLOTS; i++) {
2856f1ae32a1SGerd Hoffmann         xhci->slots[i].enabled = 0;
2857f1ae32a1SGerd Hoffmann     }
2858f1ae32a1SGerd Hoffmann }
2859f1ae32a1SGerd Hoffmann 
2860f1ae32a1SGerd Hoffmann static int usb_xhci_initfn(struct PCIDevice *dev)
2861f1ae32a1SGerd Hoffmann {
2862f1ae32a1SGerd Hoffmann     int ret;
2863f1ae32a1SGerd Hoffmann 
2864f1ae32a1SGerd Hoffmann     XHCIState *xhci = DO_UPCAST(XHCIState, pci_dev, dev);
2865f1ae32a1SGerd Hoffmann 
2866f1ae32a1SGerd Hoffmann     xhci->pci_dev.config[PCI_CLASS_PROG] = 0x30;    /* xHCI */
2867f1ae32a1SGerd Hoffmann     xhci->pci_dev.config[PCI_INTERRUPT_PIN] = 0x01; /* interrupt pin 1 */
2868f1ae32a1SGerd Hoffmann     xhci->pci_dev.config[PCI_CACHE_LINE_SIZE] = 0x10;
2869f1ae32a1SGerd Hoffmann     xhci->pci_dev.config[0x60] = 0x30; /* release number */
2870f1ae32a1SGerd Hoffmann 
2871f1ae32a1SGerd Hoffmann     usb_xhci_init(xhci, &dev->qdev);
2872f1ae32a1SGerd Hoffmann 
2873f1ae32a1SGerd Hoffmann     xhci->irq = xhci->pci_dev.irq[0];
2874f1ae32a1SGerd Hoffmann 
2875f1ae32a1SGerd Hoffmann     memory_region_init_io(&xhci->mem, &xhci_mem_ops, xhci,
2876f1ae32a1SGerd Hoffmann                           "xhci", LEN_REGS);
2877f1ae32a1SGerd Hoffmann     pci_register_bar(&xhci->pci_dev, 0,
2878f1ae32a1SGerd Hoffmann                      PCI_BASE_ADDRESS_SPACE_MEMORY|PCI_BASE_ADDRESS_MEM_TYPE_64,
2879f1ae32a1SGerd Hoffmann                      &xhci->mem);
2880f1ae32a1SGerd Hoffmann 
2881f1ae32a1SGerd Hoffmann     ret = pcie_cap_init(&xhci->pci_dev, 0xa0, PCI_EXP_TYPE_ENDPOINT, 0);
2882f1ae32a1SGerd Hoffmann     assert(ret >= 0);
2883f1ae32a1SGerd Hoffmann 
2884f1ae32a1SGerd Hoffmann     if (xhci->msi) {
2885f1ae32a1SGerd Hoffmann         ret = msi_init(&xhci->pci_dev, 0x70, 1, true, false);
2886f1ae32a1SGerd Hoffmann         assert(ret >= 0);
2887f1ae32a1SGerd Hoffmann     }
2888f1ae32a1SGerd Hoffmann 
2889f1ae32a1SGerd Hoffmann     return 0;
2890f1ae32a1SGerd Hoffmann }
2891f1ae32a1SGerd Hoffmann 
2892f1ae32a1SGerd Hoffmann static void xhci_write_config(PCIDevice *dev, uint32_t addr, uint32_t val,
2893f1ae32a1SGerd Hoffmann                               int len)
2894f1ae32a1SGerd Hoffmann {
2895f1ae32a1SGerd Hoffmann     XHCIState *xhci = DO_UPCAST(XHCIState, pci_dev, dev);
2896f1ae32a1SGerd Hoffmann 
2897f1ae32a1SGerd Hoffmann     pci_default_write_config(dev, addr, val, len);
2898f1ae32a1SGerd Hoffmann     if (xhci->msi) {
2899f1ae32a1SGerd Hoffmann         msi_write_config(dev, addr, val, len);
2900f1ae32a1SGerd Hoffmann     }
2901f1ae32a1SGerd Hoffmann }
2902f1ae32a1SGerd Hoffmann 
2903f1ae32a1SGerd Hoffmann static const VMStateDescription vmstate_xhci = {
2904f1ae32a1SGerd Hoffmann     .name = "xhci",
2905f1ae32a1SGerd Hoffmann     .unmigratable = 1,
2906f1ae32a1SGerd Hoffmann };
2907f1ae32a1SGerd Hoffmann 
2908f1ae32a1SGerd Hoffmann static Property xhci_properties[] = {
2909f1ae32a1SGerd Hoffmann     DEFINE_PROP_UINT32("msi", XHCIState, msi, 0),
2910f1ae32a1SGerd Hoffmann     DEFINE_PROP_END_OF_LIST(),
2911f1ae32a1SGerd Hoffmann };
2912f1ae32a1SGerd Hoffmann 
2913f1ae32a1SGerd Hoffmann static void xhci_class_init(ObjectClass *klass, void *data)
2914f1ae32a1SGerd Hoffmann {
2915f1ae32a1SGerd Hoffmann     PCIDeviceClass *k = PCI_DEVICE_CLASS(klass);
2916f1ae32a1SGerd Hoffmann     DeviceClass *dc = DEVICE_CLASS(klass);
2917f1ae32a1SGerd Hoffmann 
2918f1ae32a1SGerd Hoffmann     dc->vmsd    = &vmstate_xhci;
2919f1ae32a1SGerd Hoffmann     dc->props   = xhci_properties;
292064619739SJan Kiszka     dc->reset   = xhci_reset;
2921f1ae32a1SGerd Hoffmann     k->init         = usb_xhci_initfn;
2922f1ae32a1SGerd Hoffmann     k->vendor_id    = PCI_VENDOR_ID_NEC;
2923f1ae32a1SGerd Hoffmann     k->device_id    = PCI_DEVICE_ID_NEC_UPD720200;
2924f1ae32a1SGerd Hoffmann     k->class_id     = PCI_CLASS_SERIAL_USB;
2925f1ae32a1SGerd Hoffmann     k->revision     = 0x03;
2926f1ae32a1SGerd Hoffmann     k->is_express   = 1;
2927f1ae32a1SGerd Hoffmann     k->config_write = xhci_write_config;
2928f1ae32a1SGerd Hoffmann }
2929f1ae32a1SGerd Hoffmann 
2930f1ae32a1SGerd Hoffmann static TypeInfo xhci_info = {
2931f1ae32a1SGerd Hoffmann     .name          = "nec-usb-xhci",
2932f1ae32a1SGerd Hoffmann     .parent        = TYPE_PCI_DEVICE,
2933f1ae32a1SGerd Hoffmann     .instance_size = sizeof(XHCIState),
2934f1ae32a1SGerd Hoffmann     .class_init    = xhci_class_init,
2935f1ae32a1SGerd Hoffmann };
2936f1ae32a1SGerd Hoffmann 
2937f1ae32a1SGerd Hoffmann static void xhci_register_types(void)
2938f1ae32a1SGerd Hoffmann {
2939f1ae32a1SGerd Hoffmann     type_register_static(&xhci_info);
2940f1ae32a1SGerd Hoffmann }
2941f1ae32a1SGerd Hoffmann 
2942f1ae32a1SGerd Hoffmann type_init(xhci_register_types)
2943