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https://github.com/AsahiLinux/u-boot
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6ac15fda4e
There's no need to store an array of QTD pointers in the controller. Since the calculation is so simple, just have ci_get_qtd() perform it at run-time, rather than pre-calculating everything. Signed-off-by: Stephen Warren <swarren@nvidia.com>
152 lines
3.2 KiB
C
152 lines
3.2 KiB
C
/*
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* Copyright 2011, Marvell Semiconductor Inc.
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*
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* Licensed under the GPL-2 or later.
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*/
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#ifndef __GADGET__CI_UDC_H__
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#define __GADGET__CI_UDC_H__
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#define NUM_ENDPOINTS 6
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#ifdef CONFIG_CI_UDC_HAS_HOSTPC
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struct ci_udc {
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u32 usbcmd; /* 0x130 */
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u32 usbsts; /* 0x134 */
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u32 pad1[3];
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u32 devaddr; /* 0x144 */
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u32 epinitaddr; /* 0x148 */
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u32 pad2[10];
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u32 portsc; /* 0x174 */
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u32 pad178[(0x1b4 - (0x174 + 4)) / 4];
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u32 hostpc1_devlc; /* 0x1b4 */
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u32 pad1b8[(0x1f8 - (0x1b4 + 4)) / 4];
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u32 usbmode; /* 0x1f8 */
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u32 pad1fc[(0x208 - (0x1f8 + 4)) / 4];
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u32 epsetupstat; /* 0x208 */
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u32 epprime; /* 0x20c */
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u32 epflush; /* 0x210 */
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u32 epstat; /* 0x214 */
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u32 epcomp; /* 0x218 */
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u32 epctrl[16]; /* 0x21c */
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};
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#else
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struct ci_udc {
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u32 usbcmd; /* 0x140 */
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u32 usbsts; /* 0x144 */
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u32 pad1[3];
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u32 devaddr; /* 0x154 */
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u32 epinitaddr; /* 0x158 */
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u32 pad2[10];
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u32 portsc; /* 0x184 */
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u32 pad3[8];
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u32 usbmode; /* 0x1a8 */
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u32 epstat; /* 0x1ac */
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u32 epprime; /* 0x1b0 */
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u32 epflush; /* 0x1b4 */
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u32 pad4;
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u32 epcomp; /* 0x1bc */
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u32 epctrl[16]; /* 0x1c0 */
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};
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#define PTS_ENABLE 2
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#define PTS(x) (((x) & 0x3) << 30)
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#define PFSC (1 << 24)
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#endif
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#define MICRO_8FRAME 0x8
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#define USBCMD_ITC(x) ((((x) > 0xff) ? 0xff : x) << 16)
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#define USBCMD_FS2 (1 << 15)
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#define USBCMD_RST (1 << 1)
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#define USBCMD_RUN (1)
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#define STS_SLI (1 << 8)
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#define STS_URI (1 << 6)
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#define STS_PCI (1 << 2)
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#define STS_UEI (1 << 1)
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#define STS_UI (1 << 0)
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#define USBMODE_DEVICE 2
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#define EPT_TX(x) (1 << (((x) & 0xffff) + 16))
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#define EPT_RX(x) (1 << ((x) & 0xffff))
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#define CTRL_TXE (1 << 23)
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#define CTRL_TXR (1 << 22)
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#define CTRL_RXE (1 << 7)
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#define CTRL_RXR (1 << 6)
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#define CTRL_TXT_BULK (2 << 18)
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#define CTRL_RXT_BULK (2 << 2)
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struct ci_req {
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struct usb_request req;
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struct list_head queue;
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/* Bounce buffer allocated if needed to align the transfer */
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uint8_t *b_buf;
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uint32_t b_len;
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/* Buffer for the current transfer. Either req.buf/len or b_buf/len */
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uint8_t *hw_buf;
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uint32_t hw_len;
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};
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struct ci_ep {
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struct usb_ep ep;
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struct list_head queue;
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bool req_primed;
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const struct usb_endpoint_descriptor *desc;
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};
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struct ci_drv {
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struct usb_gadget gadget;
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struct ci_req *ep0_req;
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bool ep0_data_phase;
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struct usb_gadget_driver *driver;
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struct ehci_ctrl *ctrl;
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struct ept_queue_head *epts;
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uint8_t *items_mem;
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struct ci_ep ep[NUM_ENDPOINTS];
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};
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struct ept_queue_head {
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unsigned config;
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unsigned current; /* read-only */
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unsigned next;
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unsigned info;
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unsigned page0;
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unsigned page1;
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unsigned page2;
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unsigned page3;
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unsigned page4;
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unsigned reserved_0;
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unsigned char setup_data[8];
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unsigned reserved_1;
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unsigned reserved_2;
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unsigned reserved_3;
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unsigned reserved_4;
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};
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#define CONFIG_MAX_PKT(n) ((n) << 16)
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#define CONFIG_ZLT (1 << 29) /* stop on zero-len xfer */
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#define CONFIG_IOS (1 << 15) /* IRQ on setup */
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struct ept_queue_item {
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unsigned next;
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unsigned info;
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unsigned page0;
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unsigned page1;
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unsigned page2;
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unsigned page3;
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unsigned page4;
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unsigned reserved;
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};
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#define TERMINATE 1
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#define INFO_BYTES(n) ((n) << 16)
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#define INFO_IOC (1 << 15)
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#define INFO_ACTIVE (1 << 7)
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#define INFO_HALTED (1 << 6)
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#define INFO_BUFFER_ERROR (1 << 5)
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#define INFO_TX_ERROR (1 << 3)
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#endif
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