diff options
Diffstat (limited to 'drivers/staging')
30 files changed, 4099 insertions, 2163 deletions
diff --git a/drivers/staging/Kconfig b/drivers/staging/Kconfig index 6f1fa4c849a1..333308fe807e 100644 --- a/drivers/staging/Kconfig +++ b/drivers/staging/Kconfig @@ -125,4 +125,6 @@ source "drivers/staging/exfat/Kconfig" source "drivers/staging/qlge/Kconfig" +source "drivers/staging/hp/Kconfig" + endif # STAGING diff --git a/drivers/staging/Makefile b/drivers/staging/Makefile index a90f9b308c8d..e4943cd63e98 100644 --- a/drivers/staging/Makefile +++ b/drivers/staging/Makefile @@ -53,3 +53,4 @@ obj-$(CONFIG_UWB) += uwb/ obj-$(CONFIG_USB_WUSB) += wusbcore/ obj-$(CONFIG_EXFAT_FS) += exfat/ obj-$(CONFIG_QLGE) += qlge/ +obj-$(CONFIG_NET_VENDOR_HP) += hp/ diff --git a/drivers/staging/exfat/Kconfig b/drivers/staging/exfat/Kconfig index 290dbfc7ace1..ce32dfe33bec 100644 --- a/drivers/staging/exfat/Kconfig +++ b/drivers/staging/exfat/Kconfig @@ -1,3 +1,4 @@ +# SPDX-License-Identifier: GPL-2.0 config EXFAT_FS tristate "exFAT fs support" depends on BLOCK @@ -6,7 +7,7 @@ config EXFAT_FS This adds support for the exFAT file system. config EXFAT_DONT_MOUNT_VFAT - bool "Prohibit mounting of fat/vfat filesysems by exFAT" + bool "Prohibit mounting of fat/vfat filesystems by exFAT" depends on EXFAT_FS default y help diff --git a/drivers/staging/exfat/Makefile b/drivers/staging/exfat/Makefile index 84944dfbae28..6c90aec83feb 100644 --- a/drivers/staging/exfat/Makefile +++ b/drivers/staging/exfat/Makefile @@ -1,4 +1,4 @@ -# SPDX-License-Identifier: GPL-2.0 +# SPDX-License-Identifier: GPL-2.0-or-later obj-$(CONFIG_EXFAT_FS) += exfat.o diff --git a/drivers/staging/exfat/exfat.h b/drivers/staging/exfat/exfat.h index 6c12f2d79f4d..3abab33e932c 100644 --- a/drivers/staging/exfat/exfat.h +++ b/drivers/staging/exfat/exfat.h @@ -1,4 +1,4 @@ -/* SPDX-License-Identifier: GPL-2.0 */ +/* SPDX-License-Identifier: GPL-2.0-or-later */ /* * Copyright (C) 2012-2013 Samsung Electronics Co., Ltd. */ diff --git a/drivers/staging/exfat/exfat_blkdev.c b/drivers/staging/exfat/exfat_blkdev.c index f086c75e7076..81d20e6241c6 100644 --- a/drivers/staging/exfat/exfat_blkdev.c +++ b/drivers/staging/exfat/exfat_blkdev.c @@ -1,4 +1,4 @@ -// SPDX-License-Identifier: GPL-2.0 +// SPDX-License-Identifier: GPL-2.0-or-later /* * Copyright (C) 2012-2013 Samsung Electronics Co., Ltd. */ diff --git a/drivers/staging/exfat/exfat_cache.c b/drivers/staging/exfat/exfat_cache.c index 1565ce65d39f..e1b001718709 100644 --- a/drivers/staging/exfat/exfat_cache.c +++ b/drivers/staging/exfat/exfat_cache.c @@ -1,4 +1,4 @@ -// SPDX-License-Identifier: GPL-2.0 +// SPDX-License-Identifier: GPL-2.0-or-later /* * Copyright (C) 2012-2013 Samsung Electronics Co., Ltd. */ diff --git a/drivers/staging/exfat/exfat_core.c b/drivers/staging/exfat/exfat_core.c index b3e9cf725cf5..79174e5c4145 100644 --- a/drivers/staging/exfat/exfat_core.c +++ b/drivers/staging/exfat/exfat_core.c @@ -1,4 +1,4 @@ -// SPDX-License-Identifier: GPL-2.0 +// SPDX-License-Identifier: GPL-2.0-or-later /* * Copyright (C) 2012-2013 Samsung Electronics Co., Ltd. */ diff --git a/drivers/staging/exfat/exfat_nls.c b/drivers/staging/exfat/exfat_nls.c index 03cb8290b5d2..a5c4b68925fb 100644 --- a/drivers/staging/exfat/exfat_nls.c +++ b/drivers/staging/exfat/exfat_nls.c @@ -1,4 +1,4 @@ -// SPDX-License-Identifier: GPL-2.0 +// SPDX-License-Identifier: GPL-2.0-or-later /* * Copyright (C) 2012-2013 Samsung Electronics Co., Ltd. */ diff --git a/drivers/staging/exfat/exfat_super.c b/drivers/staging/exfat/exfat_super.c index 5f6caee819a6..3b2b0ceb7297 100644 --- a/drivers/staging/exfat/exfat_super.c +++ b/drivers/staging/exfat/exfat_super.c @@ -1,4 +1,4 @@ -// SPDX-License-Identifier: GPL-2.0 +// SPDX-License-Identifier: GPL-2.0-or-later /* * Copyright (C) 2012-2013 Samsung Electronics Co., Ltd. */ @@ -7,6 +7,7 @@ #include <linux/init.h> #include <linux/time.h> #include <linux/slab.h> +#include <linux/mm.h> #include <linux/seq_file.h> #include <linux/pagemap.h> #include <linux/mpage.h> @@ -3450,7 +3451,7 @@ static void exfat_free_super(struct exfat_sb_info *sbi) kfree(sbi->options.iocharset); /* mutex_init is in exfat_fill_super function. only for 3.7+ */ mutex_destroy(&sbi->s_lock); - kfree(sbi); + kvfree(sbi); } static void exfat_put_super(struct super_block *sb) @@ -3845,7 +3846,7 @@ static int exfat_fill_super(struct super_block *sb, void *data, int silent) * the filesystem, since we're only just about to mount * it and have no inodes etc active! */ - sbi = kzalloc(sizeof(struct exfat_sb_info), GFP_KERNEL); + sbi = kvzalloc(sizeof(*sbi), GFP_KERNEL); if (!sbi) return -ENOMEM; mutex_init(&sbi->s_lock); diff --git a/drivers/staging/exfat/exfat_upcase.c b/drivers/staging/exfat/exfat_upcase.c index 366082fb3dab..b91a1faa0e50 100644 --- a/drivers/staging/exfat/exfat_upcase.c +++ b/drivers/staging/exfat/exfat_upcase.c @@ -1,4 +1,4 @@ -// SPDX-License-Identifier: GPL-2.0 +// SPDX-License-Identifier: GPL-2.0-or-later /* * Copyright (C) 2012-2013 Samsung Electronics Co., Ltd. */ diff --git a/drivers/staging/fbtft/Kconfig b/drivers/staging/fbtft/Kconfig index 8ec524a95ec8..cb61c2a772bd 100644 --- a/drivers/staging/fbtft/Kconfig +++ b/drivers/staging/fbtft/Kconfig @@ -1,7 +1,7 @@ # SPDX-License-Identifier: GPL-2.0 menuconfig FB_TFT tristate "Support for small TFT LCD display modules" - depends on FB && SPI + depends on FB && SPI && OF depends on GPIOLIB || COMPILE_TEST select FB_SYS_FILLRECT select FB_SYS_COPYAREA @@ -199,13 +199,3 @@ config FB_TFT_WATTEROTT depends on FB_TFT help Generic Framebuffer support for WATTEROTT - -config FB_FLEX - tristate "Generic FB driver for TFT LCD displays" - depends on FB_TFT - help - Generic Framebuffer support for TFT LCD displays. - -config FB_TFT_FBTFT_DEVICE - tristate "Module to for adding FBTFT devices" - depends on FB_TFT diff --git a/drivers/staging/fbtft/Makefile b/drivers/staging/fbtft/Makefile index 6bc03311c9c7..27af43f32f81 100644 --- a/drivers/staging/fbtft/Makefile +++ b/drivers/staging/fbtft/Makefile @@ -36,7 +36,3 @@ obj-$(CONFIG_FB_TFT_UC1611) += fb_uc1611.o obj-$(CONFIG_FB_TFT_UC1701) += fb_uc1701.o obj-$(CONFIG_FB_TFT_UPD161704) += fb_upd161704.o obj-$(CONFIG_FB_TFT_WATTEROTT) += fb_watterott.o -obj-$(CONFIG_FB_FLEX) += flexfb.o - -# Device modules -obj-$(CONFIG_FB_TFT_FBTFT_DEVICE) += fbtft_device.o diff --git a/drivers/staging/fbtft/fbtft-core.c b/drivers/staging/fbtft/fbtft-core.c index cf5700a2ea66..a0a67aa517f0 100644 --- a/drivers/staging/fbtft/fbtft-core.c +++ b/drivers/staging/fbtft/fbtft-core.c @@ -714,7 +714,7 @@ struct fb_info *fbtft_framebuffer_alloc(struct fbtft_display *display, if (par->gamma.curves && gamma) { if (fbtft_gamma_parse_str(par, par->gamma.curves, gamma, strlen(gamma))) - goto alloc_fail; + goto release_framebuf; } /* Transmit buffer */ @@ -731,7 +731,7 @@ struct fb_info *fbtft_framebuffer_alloc(struct fbtft_display *display, if (txbuflen > 0) { txbuf = devm_kzalloc(par->info->device, txbuflen, GFP_KERNEL); if (!txbuf) - goto alloc_fail; + goto release_framebuf; par->txbuf.buf = txbuf; par->txbuf.len = txbuflen; } @@ -753,6 +753,9 @@ struct fb_info *fbtft_framebuffer_alloc(struct fbtft_display *display, return info; +release_framebuf: + framebuffer_release(info); + alloc_fail: vfree(vmem); diff --git a/drivers/staging/fbtft/fbtft_device.c b/drivers/staging/fbtft/fbtft_device.c deleted file mode 100644 index 44e1410eb3fe..000000000000 --- a/drivers/staging/fbtft/fbtft_device.c +++ /dev/null @@ -1,1261 +0,0 @@ -// SPDX-License-Identifier: GPL-2.0+ -/* - * - * Copyright (C) 2013, Noralf Tronnes - */ - -#define pr_fmt(fmt) "fbtft_device: " fmt -#include <linux/module.h> -#include <linux/kernel.h> -#include <linux/init.h> -#include <linux/gpio/consumer.h> -#include <linux/spi/spi.h> -#include <video/mipi_display.h> - -#include "fbtft.h" - -#define MAX_GPIOS 32 - -static struct spi_device *spi_device; -static struct platform_device *p_device; - -static char *name; -module_param(name, charp, 0000); -MODULE_PARM_DESC(name, - "Devicename (required). name=list => list all supported devices."); - -static unsigned int rotate; -module_param(rotate, uint, 0000); -MODULE_PARM_DESC(rotate, - "Angle to rotate display counter clockwise: 0, 90, 180, 270"); - -static unsigned int busnum; -module_param(busnum, uint, 0000); -MODULE_PARM_DESC(busnum, "SPI bus number (default=0)"); - -static unsigned int cs; -module_param(cs, uint, 0000); -MODULE_PARM_DESC(cs, "SPI chip select (default=0)"); - -static unsigned int speed; -module_param(speed, uint, 0000); -MODULE_PARM_DESC(speed, "SPI speed (override device default)"); - -static int mode = -1; -module_param(mode, int, 0000); -MODULE_PARM_DESC(mode, "SPI mode (override device default)"); - -static unsigned int fps; -module_param(fps, uint, 0000); -MODULE_PARM_DESC(fps, "Frames per second (override driver default)"); - -static char *gamma; -module_param(gamma, charp, 0000); -MODULE_PARM_DESC(gamma, - "String representation of Gamma Curve(s). Driver specific."); - -static int txbuflen; -module_param(txbuflen, int, 0000); -MODULE_PARM_DESC(txbuflen, "txbuflen (override driver default)"); - -static int bgr = -1; -module_param(bgr, int, 0000); -MODULE_PARM_DESC(bgr, - "BGR bit (supported by some drivers)."); - -static unsigned int startbyte; -module_param(startbyte, uint, 0000); -MODULE_PARM_DESC(startbyte, "Sets the Start byte used by some SPI displays."); - -static bool custom; -module_param(custom, bool, 0000); -MODULE_PARM_DESC(custom, "Add a custom display device. Use speed= argument to make it a SPI device, else platform_device"); - -static unsigned int width; -module_param(width, uint, 0000); -MODULE_PARM_DESC(width, "Display width, used with the custom argument"); - -static unsigned int height; -module_param(height, uint, 0000); -MODULE_PARM_DESC(height, "Display height, used with the custom argument"); - -static unsigned int buswidth = 8; -module_param(buswidth, uint, 0000); -MODULE_PARM_DESC(buswidth, "Display bus width, used with the custom argument"); - -static s16 init[FBTFT_MAX_INIT_SEQUENCE]; -static int init_num; -module_param_array(init, short, &init_num, 0000); -MODULE_PARM_DESC(init, "Init sequence, used with the custom argument"); - -static unsigned long debug; -module_param(debug, ulong, 0000); -MODULE_PARM_DESC(debug, - "level: 0-7 (the remaining 29 bits is for advanced usage)"); - -static unsigned int verbose = 3; -module_param(verbose, uint, 0000); -MODULE_PARM_DESC(verbose, - "0 silent, >1 show devices, >2 show devices before (default=3)"); - -struct fbtft_device_display { - char *name; - struct spi_board_info *spi; - struct platform_device *pdev; -}; - -static void fbtft_device_pdev_release(struct device *dev); - -static int write_gpio16_wr_slow(struct fbtft_par *par, void *buf, size_t len); -static void adafruit18_green_tab_set_addr_win(struct fbtft_par *par, - int xs, int ys, int xe, int ye); - -#define ADAFRUIT18_GAMMA \ - "02 1c 07 12 37 32 29 2d 29 25 2B 39 00 01 03 10\n" \ - "03 1d 07 06 2E 2C 29 2D 2E 2E 37 3F 00 00 02 10" - -#define CBERRY28_GAMMA \ - "D0 00 14 15 13 2C 42 43 4E 09 16 14 18 21\n" \ - "D0 00 14 15 13 0B 43 55 53 0C 17 14 23 20" - -static const s16 cberry28_init_sequence[] = { - /* turn off sleep mode */ - -1, MIPI_DCS_EXIT_SLEEP_MODE, - -2, 120, - - /* set pixel format to RGB-565 */ - -1, MIPI_DCS_SET_PIXEL_FORMAT, MIPI_DCS_PIXEL_FMT_16BIT, - - -1, 0xB2, 0x0C, 0x0C, 0x00, 0x33, 0x33, - - /* - * VGH = 13.26V - * VGL = -10.43V - */ - -1, 0xB7, 0x35, - - /* - * VDV and VRH register values come from command write - * (instead of NVM) - */ - -1, 0xC2, 0x01, 0xFF, - - /* - * VAP = 4.7V + (VCOM + VCOM offset + 0.5 * VDV) - * VAN = -4.7V + (VCOM + VCOM offset + 0.5 * VDV) - */ - -1, 0xC3, 0x17, - - /* VDV = 0V */ - -1, 0xC4, 0x20, - - /* VCOM = 0.675V */ - -1, 0xBB, 0x17, - - /* VCOM offset = 0V */ - -1, 0xC5, 0x20, - - /* - * AVDD = 6.8V - * AVCL = -4.8V - * VDS = 2.3V - */ - -1, 0xD0, 0xA4, 0xA1, - - -1, MIPI_DCS_SET_DISPLAY_ON, - - -3, -}; - -static const s16 hy28b_init_sequence[] = { - -1, 0x00e7, 0x0010, -1, 0x0000, 0x0001, - -1, 0x0001, 0x0100, -1, 0x0002, 0x0700, - -1, 0x0003, 0x1030, -1, 0x0004, 0x0000, - -1, 0x0008, 0x0207, -1, 0x0009, 0x0000, - -1, 0x000a, 0x0000, -1, 0x000c, 0x0001, - -1, 0x000d, 0x0000, -1, 0x000f, 0x0000, - -1, 0x0010, 0x0000, -1, 0x0011, 0x0007, - -1, 0x0012, 0x0000, -1, 0x0013, 0x0000, - -2, 50, -1, 0x0010, 0x1590, -1, 0x0011, - 0x0227, -2, 50, -1, 0x0012, 0x009c, -2, 50, - -1, 0x0013, 0x1900, -1, 0x0029, 0x0023, - -1, 0x002b, 0x000e, -2, 50, - -1, 0x0020, 0x0000, -1, 0x0021, 0x0000, - -2, 50, -1, 0x0050, 0x0000, - -1, 0x0051, 0x00ef, -1, 0x0052, 0x0000, - -1, 0x0053, 0x013f, -1, 0x0060, 0xa700, - -1, 0x0061, 0x0001, -1, 0x006a, 0x0000, - -1, 0x0080, 0x0000, -1, 0x0081, 0x0000, - -1, 0x0082, 0x0000, -1, 0x0083, 0x0000, - -1, 0x0084, 0x0000, -1, 0x0085, 0x0000, - -1, 0x0090, 0x0010, -1, 0x0092, 0x0000, - -1, 0x0093, 0x0003, -1, 0x0095, 0x0110, - -1, 0x0097, 0x0000, -1, 0x0098, 0x0000, - -1, 0x0007, 0x0133, -1, 0x0020, 0x0000, - -1, 0x0021, 0x0000, -2, 100, -3 }; - -#define HY28B_GAMMA \ - "04 1F 4 7 7 0 7 7 6 0\n" \ - "0F 00 1 7 4 0 0 0 6 7" - -static const s16 pitft_init_sequence[] = { - -1, MIPI_DCS_SOFT_RESET, - -2, 5, - -1, MIPI_DCS_SET_DISPLAY_OFF, - -1, 0xEF, 0x03, 0x80, 0x02, - -1, 0xCF, 0x00, 0xC1, 0x30, - -1, 0xED, 0x64, 0x03, 0x12, 0x81, - -1, 0xE8, 0x85, 0x00, 0x78, - -1, 0xCB, 0x39, 0x2C, 0x00, 0x34, 0x02, - -1, 0xF7, 0x20, - -1, 0xEA, 0x00, 0x00, - -1, 0xC0, 0x23, - -1, 0xC1, 0x10, - -1, 0xC5, 0x3E, 0x28, - -1, 0xC7, 0x86, - -1, MIPI_DCS_SET_PIXEL_FORMAT, 0x55, - -1, 0xB1, 0x00, 0x18, - -1, 0xB6, 0x08, 0x82, 0x27, - -1, 0xF2, 0x00, - -1, MIPI_DCS_SET_GAMMA_CURVE, 0x01, - -1, 0xE0, 0x0F, 0x31, 0x2B, 0x0C, 0x0E, 0x08, 0x4E, - 0xF1, 0x37, 0x07, 0x10, 0x03, 0x0E, 0x09, 0x00, - -1, 0xE1, 0x00, 0x0E, 0x14, 0x03, 0x11, 0x07, 0x31, - 0xC1, 0x48, 0x08, 0x0F, 0x0C, 0x31, 0x36, 0x0F, - -1, MIPI_DCS_EXIT_SLEEP_MODE, - -2, 100, - -1, MIPI_DCS_SET_DISPLAY_ON, - -2, 20, - -3 -}; - -static const s16 waveshare32b_init_sequence[] = { - -1, 0xCB, 0x39, 0x2C, 0x00, 0x34, 0x02, - -1, 0xCF, 0x00, 0xC1, 0x30, - -1, 0xE8, 0x85, 0x00, 0x78, - -1, 0xEA, 0x00, 0x00, - -1, 0xED, 0x64, 0x03, 0x12, 0x81, - -1, 0xF7, 0x20, - -1, 0xC0, 0x23, - -1, 0xC1, 0x10, - -1, 0xC5, 0x3E, 0x28, - -1, 0xC7, 0x86, - -1, MIPI_DCS_SET_ADDRESS_MODE, 0x28, - -1, MIPI_DCS_SET_PIXEL_FORMAT, 0x55, - -1, 0xB1, 0x00, 0x18, - -1, 0xB6, 0x08, 0x82, 0x27, - -1, 0xF2, 0x00, - -1, MIPI_DCS_SET_GAMMA_CURVE, 0x01, - -1, 0xE0, 0x0F, 0x31, 0x2B, 0x0C, 0x0E, 0x08, 0x4E, - 0xF1, 0x37, 0x07, 0x10, 0x03, 0x0E, 0x09, 0x00, - -1, 0xE1, 0x00, 0x0E, 0x14, 0x03, 0x11, 0x07, 0x31, - 0xC1, 0x48, 0x08, 0x0F, 0x0C, 0x31, 0x36, 0x0F, - -1, MIPI_DCS_EXIT_SLEEP_MODE, - -2, 120, - -1, MIPI_DCS_SET_DISPLAY_ON, - -1, MIPI_DCS_WRITE_MEMORY_START, - -3 -}; - -#define PIOLED_GAMMA "0 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 2 " \ - "2 2 2 2 2 2 2 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 " \ - "3 3 3 4 4 4 4 4 4 4 4 4 4 4 4" - -/* Supported displays in alphabetical order */ -static struct fbtft_device_display displays[] = { - { - .name = "adafruit18", - .spi = &(struct spi_board_info) { - .modalias = "fb_st7735r", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .gamma = ADAFRUIT18_GAMMA, - } - } - }, { - .name = "adafruit18_green", - .spi = &(struct spi_board_info) { - .modalias = "fb_st7735r", - .max_speed_hz = 4000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - .fbtftops.set_addr_win = - adafruit18_green_tab_set_addr_win, - }, - .bgr = true, - .gamma = ADAFRUIT18_GAMMA, - } - } - }, { - .name = "adafruit22", - .spi = &(struct spi_board_info) { - .modalias = "fb_hx8340bn", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 9, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "adafruit22a", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9340", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "adafruit28", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9341", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "adafruit13m", - .spi = &(struct spi_board_info) { - .modalias = "fb_ssd1306", - .max_speed_hz = 16000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - }, - } - } - }, { - .name = "admatec_c-berry28", - .spi = &(struct spi_board_info) { - .modalias = "fb_st7789v", - .max_speed_hz = 48000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - .init_sequence = cberry28_init_sequence, - }, - .gamma = CBERRY28_GAMMA, - } - } - }, { - .name = "agm1264k-fl", - .pdev = &(struct platform_device) { - .name = "fb_agm1264k-fl", - .id = 0, - .dev = { - .release = fbtft_device_pdev_release, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = FBTFT_ONBOARD_BACKLIGHT, - }, - }, - } - } - }, { - .name = "dogs102", - .spi = &(struct spi_board_info) { - .modalias = "fb_uc1701", - .max_speed_hz = 8000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - }, - .bgr = true, - } - } - }, { - .name = "er_tftm050_2", - .spi = &(struct spi_board_info) { - .modalias = "fb_ra8875", - .max_speed_hz = 5000000, - .mode = SPI_MODE_3, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - .width = 480, - .height = 272, - }, - .bgr = true, - } - } - }, { - .name = "er_tftm070_5", - .spi = &(struct spi_board_info) { - .modalias = "fb_ra8875", - .max_speed_hz = 5000000, - .mode = SPI_MODE_3, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - .width = 800, - .height = 480, - }, - .bgr = true, - } - } - }, { - .name = "ew24ha0", - .spi = &(struct spi_board_info) { - .modalias = "fb_uc1611", - .max_speed_hz = 32000000, - .mode = SPI_MODE_3, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - }, - } - } - }, { - .name = "ew24ha0_9bit", - .spi = &(struct spi_board_info) { - .modalias = "fb_uc1611", - .max_speed_hz = 32000000, - .mode = SPI_MODE_3, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 9, - }, - } - } - }, { - .name = "flexfb", - .spi = &(struct spi_board_info) { - .modalias = "flexfb", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - } - }, { - .name = "flexpfb", - .pdev = &(struct platform_device) { - .name = "flexpfb", - .id = 0, - .dev = { - .release = fbtft_device_pdev_release, - } - } - }, { - .name = "freetronicsoled128", - .spi = &(struct spi_board_info) { - .modalias = "fb_ssd1351", - .max_speed_hz = 20000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = FBTFT_ONBOARD_BACKLIGHT, - }, - .bgr = true, - } - } - }, { - .name = "hx8353d", - .spi = &(struct spi_board_info) { - .modalias = "fb_hx8353d", - .max_speed_hz = 16000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - } - } - }, { - .name = "hy28a", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9320", - .max_speed_hz = 32000000, - .mode = SPI_MODE_3, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .startbyte = 0x70, - .bgr = true, - } - } - }, { - .name = "hy28b", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9325", - .max_speed_hz = 48000000, - .mode = SPI_MODE_3, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - .init_sequence = hy28b_init_sequence, - }, - .startbyte = 0x70, - .bgr = true, - .fps = 50, - .gamma = HY28B_GAMMA, - } - } - }, { - .name = "ili9481", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9481", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .regwidth = 16, - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "itdb24", - .pdev = &(struct platform_device) { - .name = "fb_s6d1121", - .id = 0, - .dev = { - .release = fbtft_device_pdev_release, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = false, - }, - } - } - }, { - .name = "itdb28", - .pdev = &(struct platform_device) { - .name = "fb_ili9325", - .id = 0, - .dev = { - .release = fbtft_device_pdev_release, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - }, - } - } - }, { - .name = "itdb28_spi", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9325", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "mi0283qt-2", - .spi = &(struct spi_board_info) { - .modalias = "fb_hx8347d", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .startbyte = 0x70, - .bgr = true, - } - } - }, { - .name = "mi0283qt-9a", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9341", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 9, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "mi0283qt-v2", - .spi = &(struct spi_board_info) { - .modalias = "fb_watterott", - .max_speed_hz = 4000000, - .mode = SPI_MODE_3, - .platform_data = &(struct fbtft_platform_data) { - } - } - }, { - .name = "nokia3310", - .spi = &(struct spi_board_info) { - .modalias = "fb_pcd8544", - .max_speed_hz = 400000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - }, - } - } - }, { - .name = "nokia3310a", - .spi = &(struct spi_board_info) { - .modalias = "fb_tls8204", - .max_speed_hz = 1000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - }, - } - } - }, { - .name = "nokia5110", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9163", - .max_speed_hz = 12000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "piscreen", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9486", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .regwidth = 16, - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "pitft", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9340", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .chip_select = 0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - .init_sequence = pitft_init_sequence, - }, - .bgr = true, - } - } - }, { - .name = "pioled", - .spi = &(struct spi_board_info) { - .modalias = "fb_ssd1351", - .max_speed_hz = 20000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - }, - .bgr = true, - .gamma = PIOLED_GAMMA - } - } - }, { - .name = "rpi-display", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9341", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "s6d02a1", - .spi = &(struct spi_board_info) { - .modalias = "fb_s6d02a1", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "sainsmart18", - .spi = &(struct spi_board_info) { - .modalias = "fb_st7735r", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - }, - } - } - }, { - .name = "sainsmart32", - .pdev = &(struct platform_device) { - .name = "fb_ssd1289", - .id = 0, - .dev = { - .release = fbtft_device_pdev_release, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 16, - .txbuflen = -2, /* disable buffer */ - .backlight = 1, - .fbtftops.write = write_gpio16_wr_slow, - }, - .bgr = true, - }, - }, - } - }, { - .name = "sainsmart32_fast", - .pdev = &(struct platform_device) { - .name = "fb_ssd1289", - .id = 0, - .dev = { - .release = fbtft_device_pdev_release, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 16, - .txbuflen = -2, /* disable buffer */ - .backlight = 1, - }, - .bgr = true, - }, - }, - } - }, { - .name = "sainsmart32_latched", - .pdev = &(struct platform_device) { - .name = "fb_ssd1289", - .id = 0, - .dev = { - .release = fbtft_device_pdev_release, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 16, - .txbuflen = -2, /* disable buffer */ - .backlight = 1, - .fbtftops.write = - fbtft_write_gpio16_wr_latched, - }, - .bgr = true, - }, - }, - } - }, { - .name = "sainsmart32_spi", - .spi = &(struct spi_board_info) { - .modalias = "fb_ssd1289", - .max_speed_hz = 16000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "spidev", - .spi = &(struct spi_board_info) { - .modalias = "spidev", - .max_speed_hz = 500000, - .bus_num = 0, - .chip_select = 0, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - } - } - }, { - .name = "ssd1331", - .spi = &(struct spi_board_info) { - .modalias = "fb_ssd1331", - .max_speed_hz = 20000000, - .mode = SPI_MODE_3, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - }, - } - } - }, { - .name = "tinylcd35", - .spi = &(struct spi_board_info) { - .modalias = "fb_tinylcd", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "tm022hdh26", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9341", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "tontec35_9481", /* boards before 02 July 2014 */ - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9481", - .max_speed_hz = 128000000, - .mode = SPI_MODE_3, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "tontec35_9486", /* boards after 02 July 2014 */ - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9486", - .max_speed_hz = 128000000, - .mode = SPI_MODE_3, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - }, - .bgr = true, - } - } - }, { - .name = "upd161704", - .spi = &(struct spi_board_info) { - .modalias = "fb_upd161704", - .max_speed_hz = 32000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - }, - } - } - }, { - .name = "waveshare32b", - .spi = &(struct spi_board_info) { - .modalias = "fb_ili9340", - .max_speed_hz = 48000000, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - .backlight = 1, - .init_sequence = - waveshare32b_init_sequence, - }, - .bgr = true, - } - } - }, { - .name = "waveshare22", - .spi = &(struct spi_board_info) { - .modalias = "fb_bd663474", - .max_speed_hz = 32000000, - .mode = SPI_MODE_3, - .platform_data = &(struct fbtft_platform_data) { - .display = { - .buswidth = 8, - }, - } - } - }, { - /* This should be the last item. - * Used with the custom argument - */ - .name = "", - .spi = &(struct spi_board_info) { - .modalias = "", - .max_speed_hz = 0, - .mode = SPI_MODE_0, - .platform_data = &(struct fbtft_platform_data) { - } - }, - .pdev = &(struct platform_device) { - .name = "", - .id = 0, - .dev = { - .release = fbtft_device_pdev_release, - .platform_data = &(struct fbtft_platform_data) { - }, - }, - }, - } -}; - -static int write_gpio16_wr_slow(struct fbtft_par *par, void *buf, size_t len) -{ - u16 data; - int i; -#ifndef DO_NOT_OPTIMIZE_FBTFT_WRITE_GPIO - static u16 prev_data; -#endif - - fbtft_par_dbg_hex(DEBUG_WRITE, par, par->info->device, u8, buf, len, - "%s(len=%zu): ", __func__, len); - - while (len) { - data = *(u16 *)buf; - - /* Start writing by pulling down /WR */ - gpiod_set_value(par->gpio.wr, 0); - - /* Set data */ -#ifndef DO_NOT_OPTIMIZE_FBTFT_WRITE_GPIO - if (data == prev_data) { - gpiod_set_value(par->gpio.wr, 0); /* used as delay */ - } else { - for (i = 0; i < 16; i++) { - if ((data & 1) != (prev_data & 1)) - gpiod_set_value(par->gpio.db[i], - data & 1); - data >>= 1; - prev_data >>= 1; - } - } -#else - for (i = 0; i < 16; i++) { - gpiod_set_value(par->gpio.db[i], data & 1); - data >>= 1; - } -#endif - - /* Pullup /WR */ - gpiod_set_value(par->gpio.wr, 1); - -#ifndef DO_NOT_OPTIMIZE_FBTFT_WRITE_GPIO - prev_data = *(u16 *)buf; -#endif - buf += 2; - len -= 2; - } - - return 0; -} - -static void adafruit18_green_tab_set_addr_win(struct fbtft_par *par, - int xs, int ys, int xe, int ye) -{ - write_reg(par, 0x2A, 0, xs + 2, 0, xe + 2); - write_reg(par, 0x2B, 0, ys + 1, 0, ye + 1); - write_reg(par, 0x2C); -} - -static void fbtft_device_pdev_release(struct device *dev) -{ -/* Needed to silence this message: - * Device 'xxx' does not have a release() function, - * it is broken and must be fixed - */ -} - -static int spi_device_found(struct device *dev, void *data) -{ - struct spi_device *spi = to_spi_device(dev); - - dev_info(dev, "%s %s %dkHz %d bits mode=0x%02X\n", spi->modalias, - dev_name(dev), spi->max_speed_hz / 1000, spi->bits_per_word, - spi->mode); - - return 0; -} - -static void pr_spi_devices(void) -{ - pr_debug("SPI devices registered:\n"); - bus_for_each_dev(&spi_bus_type, NULL, NULL, spi_device_found); -} - -static int p_device_found(struct device *dev, void *data) -{ - struct platform_device - *pdev = to_platform_device(dev); - - if (strstr(pdev->name, "fb")) - dev_info(dev, "%s id=%d pdata? %s\n", pdev->name, pdev->id, - pdev->dev.platform_data ? "yes" : "no"); - - return 0; -} - -static void pr_p_devices(void) -{ - pr_debug("'fb' Platform devices registered:\n"); - bus_for_each_dev(&platform_bus_type, NULL, NULL, p_device_found); -} - -#ifdef MODULE -static void fbtft_device_spi_delete(struct spi_master *master, unsigned int cs) -{ - struct device *dev; - char str[32]; - - snprintf(str, sizeof(str), "%s.%u", dev_name(&master->dev), cs); - - dev = bus_find_device_by_name(&spi_bus_type, NULL, str); - if (dev) { - if (verbose) - dev_info(dev, "Deleting %s\n", str); - device_del(dev); - } -} - -static int fbtft_device_spi_device_register(struct spi_board_info *spi) -{ - struct spi_master *master; - - master = spi_busnum_to_master(spi->bus_num); - if (!master) { - pr_err("spi_busnum_to_master(%d) returned NULL\n", - spi->bus_num); - return -EINVAL; - } - /* make sure it's available */ - fbtft_device_spi_delete(master, spi->chip_select); - spi_device = spi_new_device(master, spi); - put_device(&master->dev); - if (!spi_device) { - dev_err(&master->dev, "spi_new_device() returned NULL\n"); - return -EPERM; - } - return 0; -} -#else -static int fbtft_device_spi_device_register(struct spi_board_info *spi) -{ - return spi_register_board_info(spi, 1); -} -#endif - -static int __init fbtft_device_init(void) -{ - struct spi_board_info *spi = NULL; - struct fbtft_platform_data *pdata; - bool found = false; - int i = 0; - int ret = 0; - - if (!name) { -#ifdef MODULE - pr_err("missing module parameter: 'name'\n"); - return -EINVAL; -#else - return 0; -#endif - } - - if (init_num > FBTFT_MAX_INIT_SEQUENCE) { - pr_err("init parameter: exceeded max array size: %d\n", - FBTFT_MAX_INIT_SEQUENCE); - return -EINVAL; - } - - if (verbose > 2) { - pr_spi_devices(); /* print list of registered SPI devices */ - pr_p_devices(); /* print list of 'fb' platform devices */ - } - - pr_debug("name='%s', busnum=%d, cs=%d\n", name, busnum, cs); - - if (rotate > 0 && rotate < 4) { - rotate = (4 - rotate) * 90; - pr_warn("argument 'rotate' should be an angle. Values 1-3 is deprecated. Setting it to %d.\n", - rotate); - } - if (rotate != 0 && rotate != 90 && rotate != 180 && rotate != 270) { - pr_warn("argument 'rotate' illegal value: %d. Setting it to 0.\n", - rotate); - rotate = 0; - } - - /* name=list lists all supported displays */ - if (strcmp(name, "list") == 0) { - pr_info("Supported displays:\n"); - - for (i = 0; i < ARRAY_SIZE(displays); i++) - pr_info("%s\n", displays[i].name); - return -ECANCELED; - } - - if (custom) { - i = ARRAY_SIZE(displays) - 1; - displays[i].name = name; - if (speed == 0) { - displays[i].pdev->name = name; - displays[i].spi = NULL; - } else { - size_t len; - - len = strlcpy(displays[i].spi->modalias, name, - SPI_NAME_SIZE); - if (len >= SPI_NAME_SIZE) - pr_warn("modalias (name) truncated to: %s\n", - displays[i].spi->modalias); - displays[i].pdev = NULL; - } - } - - for (i = 0; i < ARRAY_SIZE(displays); i++) { - if (strncmp(name, displays[i].name, SPI_NAME_SIZE) == 0) { - if (displays[i].spi) { - spi = displays[i].spi; - spi->chip_select = cs; - spi->bus_num = busnum; - if (speed) - spi->max_speed_hz = speed; - if (mode != -1) - spi->mode = mode; - pdata = (void *)spi->platform_data; - } else if (displays[i].pdev) { - p_device = displays[i].pdev; - pdata = p_device->dev.platform_data; - } else { - pr_err("broken displays array\n"); - return -EINVAL; - } - - pdata->rotate = rotate; - if (bgr == 0) - pdata->bgr = false; - else if (bgr == 1) - pdata->bgr = true; - if (startbyte) - pdata->startbyte = startbyte; - if (gamma) - pdata->gamma = gamma; - pdata->display.debug = debug; - if (fps) - pdata->fps = fps; - if (txbuflen) - pdata->txbuflen = txbuflen; - if (init_num) - pdata->display.init_sequence = init; - if (custom) { - pdata->display.width = width; - pdata->display.height = height; - pdata->display.buswidth = buswidth; - pdata->display.backlight = 1; - } - - if (displays[i].spi) { - ret = fbtft_device_spi_device_register(spi); - if (ret) { - pr_err("failed to register SPI device\n"); - return ret; - } - } else { - ret = platform_device_register(p_device); - if (ret < 0) { - pr_err("platform_device_register() returned %d\n", - ret); - return ret; - } - } - found = true; - break; - } - } - - if (!found) { - pr_err("display not supported: '%s'\n", name); - return -EINVAL; - } - - if (spi_device && (verbose > 1)) - pr_spi_devices(); - if (p_device && (verbose > 1)) - pr_p_devices(); - - return 0; -} - -static void __exit fbtft_device_exit(void) -{ - if (spi_device) { - device_del(&spi_device->dev); - kfree(spi_device); - } - - if (p_device) - platform_device_unregister(p_device); -} - -arch_initcall(fbtft_device_init); -module_exit(fbtft_device_exit); - -MODULE_DESCRIPTION("Add a FBTFT device."); -MODULE_AUTHOR("Noralf Tronnes"); -MODULE_LICENSE("GPL"); diff --git a/drivers/staging/fbtft/flexfb.c b/drivers/staging/fbtft/flexfb.c deleted file mode 100644 index 3747321011fa..000000000000 --- a/drivers/staging/fbtft/flexfb.c +++ /dev/null @@ -1,851 +0,0 @@ -// SPDX-License-Identifier: GPL-2.0+ -/* - * Generic FB driver for TFT LCD displays - * - * Copyright (C) 2013 Noralf Tronnes - */ - -#include <linux/module.h> -#include <linux/kernel.h> -#include <linux/init.h> -#include <linux/vmalloc.h> -#include <linux/gpio/consumer.h> -#include <linux/spi/spi.h> -#include <linux/delay.h> - -#include "fbtft.h" - -#define DRVNAME "flexfb" - -static char *chip; -module_param(chip, charp, 0000); -MODULE_PARM_DESC(chip, "LCD controller"); - -static unsigned int width; -module_param(width, uint, 0000); -MODULE_PARM_DESC(width, "Display width"); - -static unsigned int height; -module_param(height, uint, 0000); -MODULE_PARM_DESC(height, "Display height"); - -static s16 init[512]; -static int init_num; -module_param_array(init, short, &init_num, 0000); -MODULE_PARM_DESC(init, "Init sequence"); - -static unsigned int setaddrwin; -module_param(setaddrwin, uint, 0000); -MODULE_PARM_DESC(setaddrwin, "Which set_addr_win() implementation to use"); - -static unsigned int buswidth = 8; -module_param(buswidth, uint, 0000); -MODULE_PARM_DESC(buswidth, "Width of databus (default: 8)"); - -static unsigned int regwidth = 8; -module_param(regwidth, uint, 0000); -MODULE_PARM_DESC(regwidth, "Width of controller register (default: 8)"); - -static bool nobacklight; -module_param(nobacklight, bool, 0000); -MODULE_PARM_DESC(nobacklight, "Turn off backlight functionality."); - -static bool latched; -module_param(latched, bool, 0000); -MODULE_PARM_DESC(latched, "Use with latched 16-bit databus"); - -static const s16 *initp; -static int initp_num; - -/* default init sequences */ -static const s16 st7735r_init[] = { - -1, 0x01, - -2, 150, - -1, 0x11, - -2, 500, - -1, 0xB1, 0x01, 0x2C, 0x2D, - -1, 0xB2, 0x01, 0x2C, 0x2D, - -1, 0xB3, 0x01, 0x2C, 0x2D, 0x01, 0x2C, 0x2D, - -1, 0xB4, 0x07, - -1, 0xC0, 0xA2, 0x02, 0x84, - -1, 0xC1, 0xC5, - -1, 0xC2, 0x0A, 0x00, - -1, 0xC3, 0x8A, 0x2A, - -1, 0xC4, 0x8A, 0xEE, - -1, 0xC5, 0x0E, - -1, 0x20, - -1, 0x36, 0xC0, - -1, 0x3A, 0x05, - -1, 0xE0, 0x0f, 0x1a, 0x0f, 0x18, 0x2f, 0x28, 0x20, 0x22, - 0x1f, 0x1b, 0x23, 0x37, 0x00, 0x07, 0x02, 0x10, - -1, 0xE1, 0x0f, 0x1b, 0x0f, 0x17, 0x33, 0x2c, 0x29, 0x2e, - 0x30, 0x30, 0x39, 0x3f, 0x00, 0x07, 0x03, 0x10, - -1, 0x29, - -2, 100, - -1, 0x13, - -2, 10, - -3 -}; - -static const s16 ssd1289_init[] = { - -1, 0x00, 0x0001, - -1, 0x03, 0xA8A4, - -1, 0x0C, 0x0000, - -1, 0x0D, 0x080C, - -1, 0x0E, 0x2B00, - -1, 0x1E, 0x00B7, - -1, 0x01, 0x2B3F, - -1, 0x02, 0x0600, - -1, 0x10, 0x0000, - -1, 0x11, 0x6070, - -1, 0x05, 0x0000, - -1, 0x06, 0x0000, - -1, 0x16, 0xEF1C, - -1, 0x17, 0x0003, - -1, 0x07, 0x0233, - -1, 0x0B, 0x0000, - -1, 0x0F, 0x0000, - -1, 0x41, 0x0000, - -1, 0x42, 0x0000, - -1, 0x48, 0x0000, - -1, 0x49, 0x013F, - -1, 0x4A, 0x0000, - -1, 0x4B, 0x0000, - -1, 0x44, 0xEF00, - -1, 0x45, 0x0000, - -1, 0x46, 0x013F, - -1, 0x30, 0x0707, - -1, 0x31, 0x0204, - -1, 0x32, 0x0204, - -1, 0x33, 0x0502, - -1, 0x34, 0x0507, - -1, 0x35, 0x0204, - -1, 0x36, 0x0204, - -1, 0x37, 0x0502, - -1, 0x3A, 0x0302, - -1, 0x3B, 0x0302, - -1, 0x23, 0x0000, - -1, 0x24, 0x0000, - -1, 0x25, 0x8000, - -1, 0x4f, 0x0000, - -1, 0x4e, 0x0000, - -1, 0x22, - -3 -}; - -static const s16 hx8340bn_init[] = { - -1, 0xC1, 0xFF, 0x83, 0x40, - -1, 0x11, - -2, 150, - -1, 0xCA, 0x70, 0x00, 0xD9, - -1, 0xB0, 0x01, 0x11, - -1, 0xC9, 0x90, 0x49, 0x10, 0x28, 0x28, 0x10, 0x00, 0x06, - -2, 20, - -1, 0xC2, 0x60, 0x71, 0x01, 0x0E, 0x05, 0x02, 0x09, 0x31, 0x0A, - -1, 0xC3, 0x67, 0x30, 0x61, 0x17, 0x48, 0x07, 0x05, 0x33, - -2, 10, - -1, 0xB5, 0x35, 0x20, 0x45, - -1, 0xB4, 0x33, 0x25, 0x4C, - -2, 10, - -1, 0x3A, 0x05, - -1, 0x29, - -2, 10, - -3 -}; - -static const s16 ili9225_init[] = { - -1, 0x0001, 0x011C, - -1, 0x0002, 0x0100, - -1, 0x0003, 0x1030, - -1, 0x0008, 0x0808, - -1, 0x000C, 0x0000, - -1, 0x000F, 0x0A01, - -1, 0x0020, 0x0000, - -1, 0x0021, 0x0000, - -2, 50, - -1, 0x0010, 0x0A00, - -1, 0x0011, 0x1038, - -2, 50, - -1, 0x0012, 0x1121, - -1, 0x0013, 0x004E, - -1, 0x0014, 0x676F, - -1, 0x0030, 0x0000, - -1, 0x0031, 0x00DB, - -1, 0x0032, 0x0000, - -1, 0x0033, 0x0000, - -1, 0x0034, 0x00DB, - -1, 0x0035, 0x0000, - -1, 0x0036, 0x00AF, - -1, 0x0037, 0x0000, - -1, 0x0038, 0x00DB, - -1, 0x0039, 0x0000, - -1, 0x0050, 0x0000, - -1, 0x0051, 0x060A, - -1, 0x0052, 0x0D0A, - -1, 0x0053, 0x0303, - -1, 0x0054, 0x0A0D, - -1, 0x0055, 0x0A06, - -1, 0x0056, 0x0000, - -1, 0x0057, 0x0303, - -1, 0x0058, 0x0000, - -1, 0x0059, 0x0000, - -2, 50, - -1, 0x0007, 0x1017, - -2, 50, - -3 -}; - -static const s16 ili9320_init[] = { - -1, 0x00E5, 0x8000, - -1, 0x0000, 0x0001, - -1, 0x0001, 0x0100, - -1, 0x0002, 0x0700, - -1, 0x0003, 0x1030, - -1, 0x0004, 0x0000, - -1, 0x0008, 0x0202, - -1, 0x0009, 0x0000, - -1, 0x000A, 0x0000, - -1, 0x000C, 0x0000, - -1, 0x000D, 0x0000, - -1, 0x000F, 0x0000, - -1, 0x0010, 0x0000, - -1, 0x0011, 0x0007, - -1, 0x0012, 0x0000, - -1, 0x0013, 0x0000, - -2, 200, - -1, 0x0010, 0x17B0, - -1, 0x0011, 0x0031, - -2, 50, - -1, 0x0012, 0x0138, - -2, 50, - -1, 0x0013, 0x1800, - -1, 0x0029, 0x0008, - -2, 50, - -1, 0x0020, 0x0000, - -1, 0x0021, 0x0000, - -1, 0x0030, 0x0000, - -1, 0x0031, 0x0505, - -1, 0x0032, 0x0004, - -1, 0x0035, 0x0006, - -1, 0x0036, 0x0707, - -1, 0x0037, 0x0105, - -1, 0x0038, 0x0002, - -1, 0x0039, 0x0707, - -1, 0x003C, 0x0704, - -1, 0x003D, 0x0807, - -1, 0x0050, 0x0000, - -1, 0x0051, 0x00EF, - -1, 0x0052, 0x0000, - -1, 0x0053, 0x013F, - -1, 0x0060, 0x2700, - -1, 0x0061, 0x0001, - -1, 0x006A, 0x0000, - -1, 0x0080, 0x0000, - -1, 0x0081, 0x0000, - -1, 0x0082, 0x0000, - -1, 0x0083, 0x0000, - -1, 0x0084, 0x0000, - -1, 0x0085, 0x0000, - -1, 0x0090, 0x0010, - -1, 0x0092, 0x0000, - -1, 0x0093, 0x0003, - -1, 0x0095, 0x0110, - -1, 0x0097, 0x0000, - -1, 0x0098, 0x0000, - -1, 0x0007, 0x0173, - -3 -}; - -static const s16 ili9325_init[] = { - -1, 0x00E3, 0x3008, - -1, 0x00E7, 0x0012, - -1, 0x00EF, 0x1231, - -1, 0x0001, 0x0100, - -1, 0x0002, 0x0700, - -1, 0x0003, 0x1030, - -1, 0x0004, 0x0000, - -1, 0x0008, 0x0207, - -1, 0x0009, 0x0000, - -1, 0x000A, 0x0000, - -1, 0x000C, 0x0000, - -1, 0x000D, 0x0000, - -1, 0x000F, 0x0000, - -1, 0x0010, 0x0000, - -1, 0x0011, 0x0007, - -1, 0x0012, 0x0000, - -1, 0x0013, 0x0000, - -2, 200, - -1, 0x0010, 0x1690, - -1, 0x0011, 0x0223, - -2, 50, - -1, 0x0012, 0x000D, - -2, 50, - -1, 0x0013, 0x1200, - -1, 0x0029, 0x000A, - -1, 0x002B, 0x000C, - -2, 50, - -1, 0x0020, 0x0000, - -1, 0x0021, 0x0000, - -1, 0x0030, 0x0000, - -1, 0x0031, 0x0506, - -1, 0x0032, 0x0104, - -1, 0x0035, 0x0207, - -1, 0x0036, 0x000F, - -1, 0x0037, 0x0306, - -1, 0x0038, 0x0102, - -1, 0x0039, 0x0707, - -1, 0x003C, 0x0702, - -1, 0x003D, 0x1604, - -1, 0x0050, 0x0000, - -1, 0x0051, 0x00EF, - -1, 0x0052, 0x0000, - -1, 0x0053, 0x013F, - -1, 0x0060, 0xA700, - -1, 0x0061, 0x0001, - -1, 0x006A, 0x0000, - -1, 0x0080, 0x0000, - -1, 0x0081, 0x0000, - -1, 0x0082, 0x0000, - -1, 0x0083, 0x0000, - -1, 0x0084, 0x0000, - -1, 0x0085, 0x0000, - -1, 0x0090, 0x0010, - -1, 0x0092, 0x0600, - -1, 0x0007, 0x0133, - -3 -}; - -static const s16 ili9341_init[] = { - -1, 0x28, - -2, 20, - -1, 0xCF, 0x00, 0x83, 0x30, - -1, 0xED, 0x64, 0x03, 0x12, 0x81, - -1, 0xE8, 0x85, 0x01, 0x79, - -1, 0xCB, 0x39, 0x2c, 0x00, 0x34, 0x02, - -1, 0xF7, 0x20, - -1, 0xEA, 0x00, 0x00, - -1, 0xC0, 0x26, - -1, 0xC1, 0x11, - -1, 0xC5, 0x35, 0x3E, - -1, 0xC7, 0xBE, - -1, 0xB1, 0x00, 0x1B, - -1, 0xB6, 0x0a, 0x82, 0x27, 0x00, - -1, 0xB7, 0x07, - -1, 0x3A, 0x55, - -1, 0x36, 0x48, - -1, 0x11, - -2, 120, - -1, 0x29, - -2, 20, - -3 -}; - -static const s16 ssd1351_init[] = { - -1, 0xfd, 0x12, - -1, 0xfd, 0xb1, - -1, 0xae, - -1, 0xb3, 0xf1, - -1, 0xca, 0x7f, - -1, 0xa0, 0x74, - -1, 0x15, 0x00, 0x7f, - -1, 0x75, 0x00, 0x7f, - -1, 0xa1, 0x00, - -1, 0xa2, 0x00, - -1, 0xb5, 0x00, - -1, 0xab, 0x01, - -1, 0xb1, 0x32, - -1, 0xb4, 0xa0, 0xb5, 0x55, - -1, 0xbb, 0x17, - -1, 0xbe, 0x05, - -1, 0xc1, 0xc8, 0x80, 0xc8, - -1, 0xc7, 0x0f, - -1, 0xb6, 0x01, - -1, 0xa6, - -1, 0xaf, - -3 -}; - -/** - * struct flexfb_lcd_controller - Describes the LCD controller properties - * @name: Model name of the chip - * @width: Width of display in pixels - * @height: Height of display in pixels - * @setaddrwin: Which set_addr_win() implementation to use - * @regwidth: LCD Controller Register width in bits - * @init_seq: LCD initialization sequence - * @init_seq_sz: Size of LCD initialization sequence - */ -struct flexfb_lcd_controller { - const char *name; - unsigned int width; - unsigned int height; - unsigned int setaddrwin; - unsigned int regwidth; - const s16 *init_seq; - int init_seq_sz; -}; - -static const struct flexfb_lcd_controller flexfb_chip_table[] = { - { - .name = "st7735r", - .width = 120, - .height = 160, - .init_seq = st7735r_init, - .init_seq_sz = ARRAY_SIZE(st7735r_init), - }, - { - .name = "hx8340bn", - .width = 176, - .height = 220, - .init_seq = hx8340bn_init, - .init_seq_sz = ARRAY_SIZE(hx8340bn_init), - }, - { - .name = "ili9225", - .width = 176, - .height = 220, - .regwidth = 16, - .init_seq = ili9225_init, - .init_seq_sz = ARRAY_SIZE(ili9225_init), - }, - { - .name = "ili9320", - .width = 240, - .height = 320, - .setaddrwin = 1, - .regwidth = 16, - .init_seq = ili9320_init, - .init_seq_sz = ARRAY_SIZE(ili9320_init), - }, - { - .name = "ili9325", - .width = 240, - .height = 320, - .setaddrwin = 1, - .regwidth = 16, - .init_seq = ili9325_init, - .init_seq_sz = ARRAY_SIZE(ili9325_init), - }, - { - .name = "ili9341", - .width = 240, - .height = 320, - .init_seq = ili9341_init, - .init_seq_sz = ARRAY_SIZE(ili9341_init), - }, - { - .name = "ssd1289", - .width = 240, - .height = 320, - .setaddrwin = 2, - .regwidth = 16, - .init_seq = ssd1289_init, - .init_seq_sz = ARRAY_SIZE(ssd1289_init), - }, - { - .name = "ssd1351", - .width = 128, - .height = 128, - .setaddrwin = 3, - .init_seq = ssd1351_init, - .init_seq_sz = ARRAY_SIZE(ssd1351_init), - }, -}; - -/* ili9320, ili9325 */ -static void flexfb_set_addr_win_1(struct fbtft_par *par, - int xs, int ys, int xe, int ye) -{ - switch (par->info->var.rotate) { - /* R20h = Horizontal GRAM Start Address */ - /* R21h = Vertical GRAM Start Address */ - case 0: - write_reg(par, 0x0020, xs); - write_reg(par, 0x0021, ys); - break; - case 180: - write_reg(par, 0x0020, width - 1 - xs); - write_reg(par, 0x0021, height - 1 - ys); - break; - case 270: - write_reg(par, 0x0020, width - 1 - ys); - write_reg(par, 0x0021, xs); - break; - case 90: - write_reg(par, 0x0020, ys); - write_reg(par, 0x0021, height - 1 - xs); - break; - } - write_reg(par, 0x0022); /* Write Data to GRAM */ -} - -/* ssd1289 */ -static void flexfb_set_addr_win_2(struct fbtft_par *par, - int xs, int ys, int xe, int ye) -{ - switch (par->info->var.rotate) { - /* R4Eh - Set GDDRAM X address counter */ - /* R4Fh - Set GDDRAM Y address counter */ - case 0: - write_reg(par, 0x4e, xs); - write_reg(par, 0x4f, ys); - break; - case 180: - write_reg(par, 0x4e, par->info->var.xres - 1 - xs); - write_reg(par, 0x4f, par->info->var.yres - 1 - ys); - break; - case 270: - write_reg(par, 0x4e, par->info->var.yres - 1 - ys); - write_reg(par, 0x4f, xs); - break; - case 90: - write_reg(par, 0x4e, ys); - write_reg(par, 0x4f, par->info->var.xres - 1 - xs); - break; - } - - /* R22h - RAM data write */ - write_reg(par, 0x22, 0); -} - -/* ssd1351 */ -static void set_addr_win_3(struct fbtft_par *par, - int xs, int ys, int xe, int ye) -{ - write_reg(par, 0x15, xs, xe); - write_reg(par, 0x75, ys, ye); - write_reg(par, 0x5C); -} - -static int flexfb_verify_gpios_dc(struct fbtft_par *par) -{ - fbtft_par_dbg(DEBUG_VERIFY_GPIOS, par, "%s()\n", __func__); - - if (!par->gpio.dc) { - dev_err(par->info->device, - "Missing info about 'dc' gpio. Aborting.\n"); - return -EINVAL; - } - - return 0; -} - -static int flexfb_verify_gpios_db(struct fbtft_par *par) -{ - int i; - int num_db = buswidth; - - fbtft_par_dbg(DEBUG_VERIFY_GPIOS, par, "%s()\n", __func__); - - if (!par->gpio.dc) { - dev_err(par->info->device, "Missing info about 'dc' gpio. Aborting.\n"); - return -EINVAL; - } - if (!par->gpio.wr) { - dev_err(par->info->device, "Missing info about 'wr' gpio. Aborting.\n"); - return -EINVAL; - } - if (latched && !par->gpio.latch) { - dev_err(par->info->device, "Missing info about 'latch' gpio. Aborting.\n"); - return -EINVAL; - } - if (latched) - num_db = buswidth / 2; - for (i = 0; i < num_db; i++) { - if (!par->gpio.db[i]) { - dev_err(par->info->device, - "Missing info about 'db%02d' gpio. Aborting.\n", - i); - return -EINVAL; - } - } - - return 0; -} - -static void flexfb_chip_load_param(const struct flexfb_lcd_controller *chip) -{ - if (!width) - width = chip->width; - if (!height) - height = chip->height; - setaddrwin = chip->setaddrwin; - if (chip->regwidth) - regwidth = chip->regwidth; - if (!init_num) { - initp = chip->init_seq; - initp_num = chip->init_seq_sz; - } -} - -static struct fbtft_display flex_display = { }; - -static int flexfb_chip_init(const struct device *dev) -{ - int i; - - for (i = 0; i < ARRAY_SIZE(flexfb_chip_table); i++) - if (!strcmp(chip, flexfb_chip_table[i].name)) { - flexfb_chip_load_param(&flexfb_chip_table[i]); - return 0; - } - - dev_err(dev, "chip=%s is not supported\n", chip); - - return -EINVAL; -} - -static int flexfb_probe_common(struct spi_device *sdev, - struct platform_device *pdev) -{ - struct device *dev; - struct fb_info *info; - struct fbtft_par *par; - int ret; - - initp = init; - initp_num = init_num; - - if (sdev) - dev = &sdev->dev; - else - dev = &pdev->dev; - - fbtft_init_dbg(dev, "%s(%s)\n", __func__, - sdev ? "'SPI device'" : "'Platform device'"); - - if (chip) { - ret = flexfb_chip_init(dev); - if (ret) - return ret; - } - - if (width == 0 || height == 0) { - dev_err(dev, "argument(s) missing: width and height has to be set.\n"); - return -EINVAL; - } - flex_display.width = width; - flex_display.height = height; - fbtft_init_dbg(dev, "Display resolution: %dx%d\n", width, height); - fbtft_init_dbg(dev, "chip = %s\n", chip ? chip : "not set"); - fbtft_init_dbg(dev, "setaddrwin = %d\n", setaddrwin); - fbtft_init_dbg(dev, "regwidth = %d\n", regwidth); - fbtft_init_dbg(dev, "buswidth = %d\n", buswidth); - - info = fbtft_framebuffer_alloc(&flex_display, dev, dev->platform_data); - if (!info) - return -ENOMEM; - - par = info->par; - if (sdev) - par->spi = sdev; - else - par->pdev = pdev; - if (!par->init_sequence) - par->init_sequence = initp; - par->fbtftops.init_display = fbtft_init_display; - - /* registerwrite functions */ - switch (regwidth) { - case 8: - par->fbtftops.write_register = fbtft_write_reg8_bus8; - break; - case 16: - par->fbtftops.write_register = fbtft_write_reg16_bus8; - break; - default: - dev_err(dev, - "argument 'regwidth': %d is not supported.\n", - regwidth); - return -EINVAL; - } - - /* bus functions */ - if (sdev) { - par->fbtftops.write = fbtft_write_spi; - switch (buswidth) { - case 8: - par->fbtftops.write_vmem = fbtft_write_vmem16_bus8; - if (!par->startbyte) - par->fbtftops.verify_gpios = flexfb_verify_gpios_dc; - break; - case 9: - if (regwidth == 16) { - dev_err(dev, "argument 'regwidth': %d is not supported with buswidth=%d and SPI.\n", - regwidth, buswidth); - return -EINVAL; - } - par->fbtftops.write_register = fbtft_write_reg8_bus9; - par->fbtftops.write_vmem = fbtft_write_vmem16_bus9; - if (par->spi->master->bits_per_word_mask - & SPI_BPW_MASK(9)) { - par->spi->bits_per_word = 9; - break; - } - - dev_warn(dev, - "9-bit SPI not available, emulating using 8-bit.\n"); - /* allocate buffer with room for dc bits */ - par->extra = devm_kzalloc(par->info->device, - par->txbuf.len - + (par->txbuf.len / 8) + 8, - GFP_KERNEL); - if (!par->extra) { - ret = -ENOMEM; - goto out_release; - } - par->fbtftops.write = fbtft_write_spi_emulate_9; - - break; - default: - dev_err(dev, - "argument 'buswidth': %d is not supported with SPI.\n", - buswidth); - return -EINVAL; - } - } else { - par->fbtftops.verify_gpios = flexfb_verify_gpios_db; - switch (buswidth) { - case 8: - par->fbtftops.write = fbtft_write_gpio8_wr; - par->fbtftops.write_vmem = fbtft_write_vmem16_bus8; - break; - case 16: - par->fbtftops.write_register = fbtft_write_reg16_bus16; - if (latched) - par->fbtftops.write = fbtft_write_gpio16_wr_latched; - else - par->fbtftops.write = fbtft_write_gpio16_wr; - par->fbtftops.write_vmem = fbtft_write_vmem16_bus16; - break; - default: - dev_err(dev, - "argument 'buswidth': %d is not supported with parallel.\n", - buswidth); - return -EINVAL; - } - } - - /* set_addr_win function */ - switch (setaddrwin) { - case 0: - /* use default */ - break; - case 1: - par->fbtftops.set_addr_win = flexfb_set_addr_win_1; - break; - case 2: - par->fbtftops.set_addr_win = flexfb_set_addr_win_2; - break; - case 3: - par->fbtftops.set_addr_win = set_addr_win_3; - break; - default: - dev_err(dev, "argument 'setaddrwin': unknown value %d.\n", - setaddrwin); - return -EINVAL; - } - - if (!nobacklight) - par->fbtftops.register_backlight = fbtft_register_backlight; - - ret = fbtft_register_framebuffer(info); - if (ret < 0) - goto out_release; - - return 0; - -out_release: - fbtft_framebuffer_release(info); - - return ret; -} - -static int flexfb_remove_common(struct device *dev, struct fb_info *info) -{ - struct fbtft_par *par; - - if (!info) - return -EINVAL; - par = info->par; - if (par) - fbtft_par_dbg(DEBUG_DRIVER_INIT_FUNCTIONS, par, "%s()\n", - __func__); - fbtft_unregister_framebuffer(info); - fbtft_framebuffer_release(info); - - return 0; -} - -static int flexfb_probe_spi(struct spi_device *spi) -{ - return flexfb_probe_common(spi, NULL); -} - -static int flexfb_remove_spi(struct spi_device *spi) -{ - struct fb_info *info = spi_get_drvdata(spi); - - return flexfb_remove_common(&spi->dev, info); -} - -static int flexfb_probe_pdev(struct platform_device *pdev) -{ - return flexfb_probe_common(NULL, pdev); -} - -static int flexfb_remove_pdev(struct platform_device *pdev) -{ - struct fb_info *info = platform_get_drvdata(pdev); - - return flexfb_remove_common(&pdev->dev, info); -} - -static struct spi_driver flexfb_spi_driver = { - .driver = { - .name = DRVNAME, - }, - .probe = flexfb_probe_spi, - .remove = flexfb_remove_spi, -}; - -static const struct platform_device_id flexfb_platform_ids[] = { - { "flexpfb", 0 }, - { }, -}; -MODULE_DEVICE_TABLE(platform, flexfb_platform_ids); - -static struct platform_driver flexfb_platform_driver = { - .driver = { - .name = DRVNAME, - }, - .id_table = flexfb_platform_ids, - .probe = flexfb_probe_pdev, - .remove = flexfb_remove_pdev, -}; - -static int __init flexfb_init(void) -{ - int ret, ret2; - - ret = spi_register_driver(&flexfb_spi_driver); - ret2 = platform_driver_register(&flexfb_platform_driver); - if (ret < 0) - return ret; - return ret2; -} - -static void __exit flexfb_exit(void) -{ - spi_unregister_driver(&flexfb_spi_driver); - platform_driver_unregister(&flexfb_platform_driver); -} - -/* ------------------------------------------------------------------------- */ - -module_init(flexfb_init); -module_exit(flexfb_exit); - -MODULE_DESCRIPTION("Generic FB driver for TFT LCD displays"); -MODULE_AUTHOR("Noralf Tronnes"); -MODULE_LICENSE("GPL"); diff --git a/drivers/staging/hp/Kconfig b/drivers/staging/hp/Kconfig new file mode 100644 index 000000000000..fb395cfe6b92 --- /dev/null +++ b/drivers/staging/hp/Kconfig @@ -0,0 +1,29 @@ +# SPDX-License-Identifier: GPL-2.0-only +# +# HP network device configuration +# + +config NET_VENDOR_HP + bool "HP devices" + default y + depends on ISA || EISA || PCI + ---help--- + If you have a network (Ethernet) card belonging to this class, say Y. + + Note that the answer to this question doesn't directly affect the + kernel: saying N will just cause the configurator to skip all + the questions about HP cards. If you say Y, you will be asked for + your specific card in the following questions. + +if NET_VENDOR_HP + +config HP100 + tristate "HP 10/100VG PCLAN (ISA, EISA, PCI) support" + depends on (ISA || EISA || PCI) + ---help--- + If you have a network (Ethernet) card of this type, say Y here. + + To compile this driver as a module, choose M here. The module + will be called hp100. + +endif # NET_VENDOR_HP diff --git a/drivers/staging/hp/Makefile b/drivers/staging/hp/Makefile new file mode 100644 index 000000000000..5ed723bb11e2 --- /dev/null +++ b/drivers/staging/hp/Makefile @@ -0,0 +1,6 @@ +# SPDX-License-Identifier: GPL-2.0-only +# +# Makefile for the HP network device drivers. +# + +obj-$(CONFIG_HP100) += hp100.o diff --git a/drivers/staging/hp/hp100.c b/drivers/staging/hp/hp100.c new file mode 100644 index 000000000000..6ec78f5c602f --- /dev/null +++ b/drivers/staging/hp/hp100.c @@ -0,0 +1,3037 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* +** hp100.c +** HP CASCADE Architecture Driver for 100VG-AnyLan Network Adapters +** +** $Id: hp100.c,v 1.58 2001/09/24 18:03:01 perex Exp perex $ +** +** Based on the HP100 driver written by Jaroslav Kysela <perex@jcu.cz> +** Extended for new busmaster capable chipsets by +** Siegfried "Frieder" Loeffler (dg1sek) <floeff@mathematik.uni-stuttgart.de> +** +** Maintained by: Jaroslav Kysela <perex@perex.cz> +** +** This driver has only been tested with +** -- HP J2585B 10/100 Mbit/s PCI Busmaster +** -- HP J2585A 10/100 Mbit/s PCI +** -- HP J2970A 10 Mbit/s PCI Combo 10base-T/BNC +** -- HP J2973A 10 Mbit/s PCI 10base-T +** -- HP J2573 10/100 ISA +** -- Compex ReadyLink ENET100-VG4 10/100 Mbit/s PCI / EISA +** -- Compex FreedomLine 100/VG 10/100 Mbit/s ISA / EISA / PCI +** +** but it should also work with the other CASCADE based adapters. +** +** TODO: +** - J2573 seems to hang sometimes when in shared memory mode. +** - Mode for Priority TX +** - Check PCI registers, performance might be improved? +** - To reduce interrupt load in busmaster, one could switch off +** the interrupts that are used to refill the queues whenever the +** queues are filled up to more than a certain threshold. +** - some updates for EISA version of card +** +** +** +** 1.57c -> 1.58 +** - used indent to change coding-style +** - added KTI DP-200 EISA ID +** - ioremap is also used for low (<1MB) memory (multi-architecture support) +** +** 1.57b -> 1.57c - Arnaldo Carvalho de Melo <acme@conectiva.com.br> +** - release resources on failure in init_module +** +** 1.57 -> 1.57b - Jean II +** - fix spinlocks, SMP is now working ! +** +** 1.56 -> 1.57 +** - updates for new PCI interface for 2.1 kernels +** +** 1.55 -> 1.56 +** - removed printk in misc. interrupt and update statistics to allow +** monitoring of card status +** - timing changes in xmit routines, relogin to 100VG hub added when +** driver does reset +** - included fix for Compex FreedomLine PCI adapter +** +** 1.54 -> 1.55 +** - fixed bad initialization in init_module +** - added Compex FreedomLine adapter +** - some fixes in card initialization +** +** 1.53 -> 1.54 +** - added hardware multicast filter support (doesn't work) +** - little changes in hp100_sense_lan routine +** - added support for Coax and AUI (J2970) +** - fix for multiple cards and hp100_mode parameter (insmod) +** - fix for shared IRQ +** +** 1.52 -> 1.53 +** - fixed bug in multicast support +** +*/ + +#define HP100_DEFAULT_PRIORITY_TX 0 + +#undef HP100_DEBUG +#undef HP100_DEBUG_B /* Trace */ +#undef HP100_DEBUG_BM /* Debug busmaster code (PDL stuff) */ + +#undef HP100_DEBUG_TRAINING /* Debug login-to-hub procedure */ +#undef HP100_DEBUG_TX +#undef HP100_DEBUG_IRQ +#undef HP100_DEBUG_RX + +#undef HP100_MULTICAST_FILTER /* Need to be debugged... */ + +#include <linux/module.h> +#include <linux/kernel.h> +#include <linux/sched.h> +#include <linux/string.h> +#include <linux/errno.h> +#include <linux/ioport.h> +#include <linux/interrupt.h> +#include <linux/eisa.h> +#include <linux/pci.h> +#include <linux/dma-mapping.h> +#include <linux/spinlock.h> +#include <linux/netdevice.h> +#include <linux/etherdevice.h> +#include <linux/skbuff.h> +#include <linux/types.h> +#include <linux/delay.h> +#include <linux/init.h> +#include <linux/bitops.h> +#include <linux/jiffies.h> + +#include <asm/io.h> + +#include "hp100.h" + +/* + * defines + */ + +#define HP100_BUS_ISA 0 +#define HP100_BUS_EISA 1 +#define HP100_BUS_PCI 2 + +#define HP100_REGION_SIZE 0x20 /* for ioports */ +#define HP100_SIG_LEN 8 /* same as EISA_SIG_LEN */ + +#define HP100_MAX_PACKET_SIZE (1536+4) +#define HP100_MIN_PACKET_SIZE 60 + +#ifndef HP100_DEFAULT_RX_RATIO +/* default - 75% onboard memory on the card are used for RX packets */ +#define HP100_DEFAULT_RX_RATIO 75 +#endif + +#ifndef HP100_DEFAULT_PRIORITY_TX +/* default - don't enable transmit outgoing packets as priority */ +#define HP100_DEFAULT_PRIORITY_TX 0 +#endif + +/* + * structures + */ + +struct hp100_private { + spinlock_t lock; + char id[HP100_SIG_LEN]; + u_short chip; + u_short soft_model; + u_int memory_size; + u_int virt_memory_size; + u_short rx_ratio; /* 1 - 99 */ + u_short priority_tx; /* != 0 - priority tx */ + u_short mode; /* PIO, Shared Mem or Busmaster */ + u_char bus; + struct pci_dev *pci_dev; + short mem_mapped; /* memory mapped access */ + void __iomem *mem_ptr_virt; /* virtual memory mapped area, maybe NULL */ + unsigned long mem_ptr_phys; /* physical memory mapped area */ + short lan_type; /* 10Mb/s, 100Mb/s or -1 (error) */ + int hub_status; /* was login to hub successful? */ + u_char mac1_mode; + u_char mac2_mode; + u_char hash_bytes[8]; + + /* Rings for busmaster mode: */ + hp100_ring_t *rxrhead; /* Head (oldest) index into rxring */ + hp100_ring_t *rxrtail; /* Tail (newest) index into rxring */ + hp100_ring_t *txrhead; /* Head (oldest) index into txring */ + hp100_ring_t *txrtail; /* Tail (newest) index into txring */ + + hp100_ring_t rxring[MAX_RX_PDL]; + hp100_ring_t txring[MAX_TX_PDL]; + + u_int *page_vaddr_algn; /* Aligned virtual address of allocated page */ + u_long whatever_offset; /* Offset to bus/phys/dma address */ + int rxrcommit; /* # Rx PDLs committed to adapter */ + int txrcommit; /* # Tx PDLs committed to adapter */ +}; + +/* + * variables + */ +#ifdef CONFIG_ISA +static const char *hp100_isa_tbl[] = { + "HWPF150", /* HP J2573 rev A */ + "HWP1950", /* HP J2573 */ +}; +#endif + +static const struct eisa_device_id hp100_eisa_tbl[] = { + { "HWPF180" }, /* HP J2577 rev A */ + { "HWP1920" }, /* HP 27248B */ + { "HWP1940" }, /* HP J2577 */ + { "HWP1990" }, /* HP J2577 */ + { "CPX0301" }, /* ReadyLink ENET100-VG4 */ + { "CPX0401" }, /* FreedomLine 100/VG */ + { "" } /* Mandatory final entry ! */ +}; +MODULE_DEVICE_TABLE(eisa, hp100_eisa_tbl); + +static const struct pci_device_id hp100_pci_tbl[] = { + {PCI_VENDOR_ID_HP, PCI_DEVICE_ID_HP_J2585A, PCI_ANY_ID, PCI_ANY_ID,}, + {PCI_VENDOR_ID_HP, PCI_DEVICE_ID_HP_J2585B, PCI_ANY_ID, PCI_ANY_ID,}, + {PCI_VENDOR_ID_HP, PCI_DEVICE_ID_HP_J2970A, PCI_ANY_ID, PCI_ANY_ID,}, + {PCI_VENDOR_ID_HP, PCI_DEVICE_ID_HP_J2973A, PCI_ANY_ID, PCI_ANY_ID,}, + {PCI_VENDOR_ID_COMPEX, PCI_DEVICE_ID_COMPEX_ENET100VG4, PCI_ANY_ID, PCI_ANY_ID,}, + {PCI_VENDOR_ID_COMPEX2, PCI_DEVICE_ID_COMPEX2_100VG, PCI_ANY_ID, PCI_ANY_ID,}, +/* {PCI_VENDOR_ID_KTI, PCI_DEVICE_ID_KTI_DP200, PCI_ANY_ID, PCI_ANY_ID }, */ + {} /* Terminating entry */ +}; +MODULE_DEVICE_TABLE(pci, hp100_pci_tbl); + +static int hp100_rx_ratio = HP100_DEFAULT_RX_RATIO; +static int hp100_priority_tx = HP100_DEFAULT_PRIORITY_TX; +static int hp100_mode = 1; + +module_param(hp100_rx_ratio, int, 0); +module_param(hp100_priority_tx, int, 0); +module_param(hp100_mode, int, 0); + +/* + * prototypes + */ + +static int hp100_probe1(struct net_device *dev, int ioaddr, u_char bus, + struct pci_dev *pci_dev); + + +static int hp100_open(struct net_device *dev); +static int hp100_close(struct net_device *dev); +static netdev_tx_t hp100_start_xmit(struct sk_buff *skb, + struct net_device *dev); +static netdev_tx_t hp100_start_xmit_bm(struct sk_buff *skb, + struct net_device *dev); +static void hp100_rx(struct net_device *dev); +static struct net_device_stats *hp100_get_stats(struct net_device *dev); +static void hp100_misc_interrupt(struct net_device *dev); +static void hp100_update_stats(struct net_device *dev); +static void hp100_clear_stats(struct hp100_private *lp, int ioaddr); +static void hp100_set_multicast_list(struct net_device *dev); +static irqreturn_t hp100_interrupt(int irq, void *dev_id); +static void hp100_start_interface(struct net_device *dev); +static void hp100_stop_interface(struct net_device *dev); +static void hp100_load_eeprom(struct net_device *dev, u_short ioaddr); +static int hp100_sense_lan(struct net_device *dev); +static int hp100_login_to_vg_hub(struct net_device *dev, + u_short force_relogin); +static int hp100_down_vg_link(struct net_device *dev); +static void hp100_cascade_reset(struct net_device *dev, u_short enable); +static void hp100_BM_shutdown(struct net_device *dev); +static void hp100_mmuinit(struct net_device *dev); +static void hp100_init_pdls(struct net_device *dev); +static int hp100_init_rxpdl(struct net_device *dev, + register hp100_ring_t * ringptr, + register u_int * pdlptr); +static int hp100_init_txpdl(struct net_device *dev, + register hp100_ring_t * ringptr, + register u_int * pdlptr); +static void hp100_rxfill(struct net_device *dev); +static void hp100_hwinit(struct net_device *dev); +static void hp100_clean_txring(struct net_device *dev); +#ifdef HP100_DEBUG +static void hp100_RegisterDump(struct net_device *dev); +#endif + +/* Conversion to new PCI API : + * Convert an address in a kernel buffer to a bus/phys/dma address. + * This work *only* for memory fragments part of lp->page_vaddr, + * because it was properly DMA allocated via pci_alloc_consistent(), + * so we just need to "retrieve" the original mapping to bus/phys/dma + * address - Jean II */ +static inline dma_addr_t virt_to_whatever(struct net_device *dev, u32 * ptr) +{ + struct hp100_private *lp = netdev_priv(dev); + return ((u_long) ptr) + lp->whatever_offset; +} + +static inline u_int pdl_map_data(struct hp100_private *lp, void *data) +{ + return pci_map_single(lp->pci_dev, data, + MAX_ETHER_SIZE, PCI_DMA_FROMDEVICE); +} + +/* TODO: This function should not really be needed in a good design... */ +static void wait(void) +{ + mdelay(1); +} + +/* + * probe functions + * These functions should - if possible - avoid doing write operations + * since this could cause problems when the card is not installed. + */ + +/* + * Read board id and convert to string. + * Effectively same code as decode_eisa_sig + */ +static const char *hp100_read_id(int ioaddr) +{ + int i; + static char str[HP100_SIG_LEN]; + unsigned char sig[4], sum; + unsigned short rev; + + hp100_page(ID_MAC_ADDR); + sum = 0; + for (i = 0; i < 4; i++) { + sig[i] = hp100_inb(BOARD_ID + i); + sum += sig[i]; + } + + sum += hp100_inb(BOARD_ID + i); + if (sum != 0xff) + return NULL; /* bad checksum */ + + str[0] = ((sig[0] >> 2) & 0x1f) + ('A' - 1); + str[1] = (((sig[0] & 3) << 3) | (sig[1] >> 5)) + ('A' - 1); + str[2] = (sig[1] & 0x1f) + ('A' - 1); + rev = (sig[2] << 8) | sig[3]; + sprintf(str + 3, "%04X", rev); + + return str; +} + +#ifdef CONFIG_ISA +static __init int hp100_isa_probe1(struct net_device *dev, int ioaddr) +{ + const char *sig; + int i; + + if (!request_region(ioaddr, HP100_REGION_SIZE, "hp100")) + goto err; + + if (hp100_inw(HW_ID) != HP100_HW_ID_CASCADE) { + release_region(ioaddr, HP100_REGION_SIZE); + goto err; + } + + sig = hp100_read_id(ioaddr); + release_region(ioaddr, HP100_REGION_SIZE); + + if (sig == NULL) + goto err; + + for (i = 0; i < ARRAY_SIZE(hp100_isa_tbl); i++) { + if (!strcmp(hp100_isa_tbl[i], sig)) + break; + + } + + if (i < ARRAY_SIZE(hp100_isa_tbl)) + return hp100_probe1(dev, ioaddr, HP100_BUS_ISA, NULL); + err: + return -ENODEV; + +} +/* + * Probe for ISA board. + * EISA and PCI are handled by device infrastructure. + */ + +static int __init hp100_isa_probe(struct net_device *dev, int addr) +{ + int err = -ENODEV; + + /* Probe for a specific ISA address */ + if (addr > 0xff && addr < 0x400) + err = hp100_isa_probe1(dev, addr); + + else if (addr != 0) + err = -ENXIO; + + else { + /* Probe all ISA possible port regions */ + for (addr = 0x100; addr < 0x400; addr += 0x20) { + err = hp100_isa_probe1(dev, addr); + if (!err) + break; + } + } + return err; +} +#endif /* CONFIG_ISA */ + +#if !defined(MODULE) && defined(CONFIG_ISA) +struct net_device * __init hp100_probe(int unit) +{ + struct net_device *dev = alloc_etherdev(sizeof(struct hp100_private)); + int err; + + if (!dev) + return ERR_PTR(-ENODEV); + +#ifdef HP100_DEBUG_B + hp100_outw(0x4200, TRACE); + printk("hp100: %s: probe\n", dev->name); +#endif + + if (unit >= 0) { + sprintf(dev->name, "eth%d", unit); + netdev_boot_setup_check(dev); + } + + err = hp100_isa_probe(dev, dev->base_addr); + if (err) + goto out; + + return dev; + out: + free_netdev(dev); + return ERR_PTR(err); +} +#endif /* !MODULE && CONFIG_ISA */ + +static const struct net_device_ops hp100_bm_netdev_ops = { + .ndo_open = hp100_open, + .ndo_stop = hp100_close, + .ndo_start_xmit = hp100_start_xmit_bm, + .ndo_get_stats = hp100_get_stats, + .ndo_set_rx_mode = hp100_set_multicast_list, + .ndo_set_mac_address = eth_mac_addr, + .ndo_validate_addr = eth_validate_addr, +}; + +static const struct net_device_ops hp100_netdev_ops = { + .ndo_open = hp100_open, + .ndo_stop = hp100_close, + .ndo_start_xmit = hp100_start_xmit, + .ndo_get_stats = hp100_get_stats, + .ndo_set_rx_mode = hp100_set_multicast_list, + .ndo_set_mac_address = eth_mac_addr, + .ndo_validate_addr = eth_validate_addr, +}; + +static int hp100_probe1(struct net_device *dev, int ioaddr, u_char bus, + struct pci_dev *pci_dev) +{ + int i; + int err = -ENODEV; + const char *eid; + u_int chip; + u_char uc; + u_int memory_size = 0, virt_memory_size = 0; + u_short local_mode, lsw; + short mem_mapped; + unsigned long mem_ptr_phys; + void __iomem *mem_ptr_virt; + struct hp100_private *lp; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4201, TRACE); + printk("hp100: %s: probe1\n", dev->name); +#endif + + /* memory region for programmed i/o */ + if (!request_region(ioaddr, HP100_REGION_SIZE, "hp100")) + goto out1; + + if (hp100_inw(HW_ID) != HP100_HW_ID_CASCADE) + goto out2; + + chip = hp100_inw(PAGING) & HP100_CHIPID_MASK; +#ifdef HP100_DEBUG + if (chip == HP100_CHIPID_SHASTA) + printk("hp100: %s: Shasta Chip detected. (This is a pre 802.12 chip)\n", dev->name); + else if (chip == HP100_CHIPID_RAINIER) + printk("hp100: %s: Rainier Chip detected. (This is a pre 802.12 chip)\n", dev->name); + else if (chip == HP100_CHIPID_LASSEN) + printk("hp100: %s: Lassen Chip detected.\n", dev->name); + else + printk("hp100: %s: Warning: Unknown CASCADE chip (id=0x%.4x).\n", dev->name, chip); +#endif + + dev->base_addr = ioaddr; + + eid = hp100_read_id(ioaddr); + if (eid == NULL) { /* bad checksum? */ + printk(KERN_WARNING "%s: bad ID checksum at base port 0x%x\n", + __func__, ioaddr); + goto out2; + } + + hp100_page(ID_MAC_ADDR); + for (i = uc = 0; i < 7; i++) + uc += hp100_inb(LAN_ADDR + i); + if (uc != 0xff) { + printk(KERN_WARNING + "%s: bad lan address checksum at port 0x%x)\n", + __func__, ioaddr); + err = -EIO; + goto out2; + } + + /* Make sure, that all registers are correctly updated... */ + + hp100_load_eeprom(dev, ioaddr); + wait(); + + /* + * Determine driver operation mode + * + * Use the variable "hp100_mode" upon insmod or as kernel parameter to + * force driver modes: + * hp100_mode=1 -> default, use busmaster mode if configured. + * hp100_mode=2 -> enable shared memory mode + * hp100_mode=3 -> force use of i/o mapped mode. + * hp100_mode=4 -> same as 1, but re-set the enable bit on the card. + */ + + /* + * LSW values: + * 0x2278 -> J2585B, PnP shared memory mode + * 0x2270 -> J2585B, shared memory mode, 0xdc000 + * 0xa23c -> J2585B, I/O mapped mode + * 0x2240 -> EISA COMPEX, BusMaster (Shasta Chip) + * 0x2220 -> EISA HP, I/O (Shasta Chip) + * 0x2260 -> EISA HP, BusMaster (Shasta Chip) + */ + +#if 0 + local_mode = 0x2270; + hp100_outw(0xfefe, OPTION_LSW); + hp100_outw(local_mode | HP100_SET_LB | HP100_SET_HB, OPTION_LSW); +#endif + + /* hp100_mode value maybe used in future by another card */ + local_mode = hp100_mode; + if (local_mode < 1 || local_mode > 4) + local_mode = 1; /* default */ +#ifdef HP100_DEBUG + printk("hp100: %s: original LSW = 0x%x\n", dev->name, + hp100_inw(OPTION_LSW)); +#endif + + if (local_mode == 3) { + hp100_outw(HP100_MEM_EN | HP100_RESET_LB, OPTION_LSW); + hp100_outw(HP100_IO_EN | HP100_SET_LB, OPTION_LSW); + hp100_outw(HP100_BM_WRITE | HP100_BM_READ | HP100_RESET_HB, OPTION_LSW); + printk("hp100: IO mapped mode forced.\n"); + } else if (local_mode == 2) { + hp100_outw(HP100_MEM_EN | HP100_SET_LB, OPTION_LSW); + hp100_outw(HP100_IO_EN | HP100_SET_LB, OPTION_LSW); + hp100_outw(HP100_BM_WRITE | HP100_BM_READ | HP100_RESET_HB, OPTION_LSW); + printk("hp100: Shared memory mode requested.\n"); + } else if (local_mode == 4) { + if (chip == HP100_CHIPID_LASSEN) { + hp100_outw(HP100_BM_WRITE | HP100_BM_READ | HP100_SET_HB, OPTION_LSW); + hp100_outw(HP100_IO_EN | HP100_MEM_EN | HP100_RESET_LB, OPTION_LSW); + printk("hp100: Busmaster mode requested.\n"); + } + local_mode = 1; + } + + if (local_mode == 1) { /* default behaviour */ + lsw = hp100_inw(OPTION_LSW); + + if ((lsw & HP100_IO_EN) && (~lsw & HP100_MEM_EN) && + (~lsw & (HP100_BM_WRITE | HP100_BM_READ))) { +#ifdef HP100_DEBUG + printk("hp100: %s: IO_EN bit is set on card.\n", dev->name); +#endif + local_mode = 3; + } else if (chip == HP100_CHIPID_LASSEN && + (lsw & (HP100_BM_WRITE | HP100_BM_READ)) == (HP100_BM_WRITE | HP100_BM_READ)) { + /* Conversion to new PCI API : + * I don't have the doc, but I assume that the card + * can map the full 32bit address space. + * Also, we can have EISA Busmaster cards (not tested), + * so beware !!! - Jean II */ + if((bus == HP100_BUS_PCI) && + (pci_set_dma_mask(pci_dev, DMA_BIT_MASK(32)))) { + /* Gracefully fallback to shared memory */ + goto busmasterfail; + } + printk("hp100: Busmaster mode enabled.\n"); + hp100_outw(HP100_MEM_EN | HP100_IO_EN | HP100_RESET_LB, OPTION_LSW); + } else { + busmasterfail: +#ifdef HP100_DEBUG + printk("hp100: %s: Card not configured for BM or BM not supported with this card.\n", dev->name); + printk("hp100: %s: Trying shared memory mode.\n", dev->name); +#endif + /* In this case, try shared memory mode */ + local_mode = 2; + hp100_outw(HP100_MEM_EN | HP100_SET_LB, OPTION_LSW); + /* hp100_outw(HP100_IO_EN|HP100_RESET_LB, OPTION_LSW); */ + } + } +#ifdef HP100_DEBUG + printk("hp100: %s: new LSW = 0x%x\n", dev->name, hp100_inw(OPTION_LSW)); +#endif + + /* Check for shared memory on the card, eventually remap it */ + hp100_page(HW_MAP); + mem_mapped = ((hp100_inw(OPTION_LSW) & (HP100_MEM_EN)) != 0); + mem_ptr_phys = 0UL; + mem_ptr_virt = NULL; + memory_size = (8192 << ((hp100_inb(SRAM) >> 5) & 0x07)); + virt_memory_size = 0; + + /* For memory mapped or busmaster mode, we want the memory address */ + if (mem_mapped || (local_mode == 1)) { + mem_ptr_phys = (hp100_inw(MEM_MAP_LSW) | (hp100_inw(MEM_MAP_MSW) << 16)); + mem_ptr_phys &= ~0x1fff; /* 8k alignment */ + + if (bus == HP100_BUS_ISA && (mem_ptr_phys & ~0xfffff) != 0) { + printk("hp100: Can only use programmed i/o mode.\n"); + mem_ptr_phys = 0; + mem_mapped = 0; + local_mode = 3; /* Use programmed i/o */ + } + + /* We do not need access to shared memory in busmaster mode */ + /* However in slave mode we need to remap high (>1GB) card memory */ + if (local_mode != 1) { /* = not busmaster */ + /* We try with smaller memory sizes, if ioremap fails */ + for (virt_memory_size = memory_size; virt_memory_size > 16383; virt_memory_size >>= 1) { + if ((mem_ptr_virt = ioremap((u_long) mem_ptr_phys, virt_memory_size)) == NULL) { +#ifdef HP100_DEBUG + printk("hp100: %s: ioremap for 0x%x bytes high PCI memory at 0x%lx failed\n", dev->name, virt_memory_size, mem_ptr_phys); +#endif + } else { +#ifdef HP100_DEBUG + printk("hp100: %s: remapped 0x%x bytes high PCI memory at 0x%lx to %p.\n", dev->name, virt_memory_size, mem_ptr_phys, mem_ptr_virt); +#endif + break; + } + } + + if (mem_ptr_virt == NULL) { /* all ioremap tries failed */ + printk("hp100: Failed to ioremap the PCI card memory. Will have to use i/o mapped mode.\n"); + local_mode = 3; + virt_memory_size = 0; + } + } + } + + if (local_mode == 3) { /* io mapped forced */ + mem_mapped = 0; + mem_ptr_phys = 0; + mem_ptr_virt = NULL; + printk("hp100: Using (slow) programmed i/o mode.\n"); + } + + /* Initialise the "private" data structure for this card. */ + lp = netdev_priv(dev); + + spin_lock_init(&lp->lock); + strlcpy(lp->id, eid, HP100_SIG_LEN); + lp->chip = chip; + lp->mode = local_mode; + lp->bus = bus; + lp->pci_dev = pci_dev; + lp->priority_tx = hp100_priority_tx; + lp->rx_ratio = hp100_rx_ratio; + lp->mem_ptr_phys = mem_ptr_phys; + lp->mem_ptr_virt = mem_ptr_virt; + hp100_page(ID_MAC_ADDR); + lp->soft_model = hp100_inb(SOFT_MODEL); + lp->mac1_mode = HP100_MAC1MODE3; + lp->mac2_mode = HP100_MAC2MODE3; + memset(&lp->hash_bytes, 0x00, 8); + + dev->base_addr = ioaddr; + + lp->memory_size = memory_size; + lp->virt_memory_size = virt_memory_size; + lp->rx_ratio = hp100_rx_ratio; /* can be conf'd with insmod */ + + if (lp->mode == 1) /* busmaster */ + dev->netdev_ops = &hp100_bm_netdev_ops; + else + dev->netdev_ops = &hp100_netdev_ops; + + /* Ask the card for which IRQ line it is configured */ + if (bus == HP100_BUS_PCI) { + dev->irq = pci_dev->irq; + } else { + hp100_page(HW_MAP); + dev->irq = hp100_inb(IRQ_CHANNEL) & HP100_IRQMASK; + if (dev->irq == 2) + dev->irq = 9; + } + + if (lp->mode == 1) /* busmaster */ + dev->dma = 4; + + /* Ask the card for its MAC address and store it for later use. */ + hp100_page(ID_MAC_ADDR); + for (i = uc = 0; i < 6; i++) + dev->dev_addr[i] = hp100_inb(LAN_ADDR + i); + + /* Reset statistics (counters) */ + hp100_clear_stats(lp, ioaddr); + + /* If busmaster mode is wanted, a dma-capable memory area is needed for + * the rx and tx PDLs + * PCI cards can access the whole PC memory. Therefore GFP_DMA is not + * needed for the allocation of the memory area. + */ + + /* TODO: We do not need this with old cards, where PDLs are stored + * in the cards shared memory area. But currently, busmaster has been + * implemented/tested only with the lassen chip anyway... */ + if (lp->mode == 1) { /* busmaster */ + dma_addr_t page_baddr; + /* Get physically continuous memory for TX & RX PDLs */ + /* Conversion to new PCI API : + * Pages are always aligned and zeroed, no need to it ourself. + * Doc says should be OK for EISA bus as well - Jean II */ + lp->page_vaddr_algn = pci_alloc_consistent(lp->pci_dev, MAX_RINGSIZE, &page_baddr); + if (!lp->page_vaddr_algn) { + err = -ENOMEM; + goto out_mem_ptr; + } + lp->whatever_offset = ((u_long) page_baddr) - ((u_long) lp->page_vaddr_algn); + +#ifdef HP100_DEBUG_BM + printk("hp100: %s: Reserved DMA memory from 0x%x to 0x%x\n", dev->name, (u_int) lp->page_vaddr_algn, (u_int) lp->page_vaddr_algn + MAX_RINGSIZE); +#endif + lp->rxrcommit = lp->txrcommit = 0; + lp->rxrhead = lp->rxrtail = &(lp->rxring[0]); + lp->txrhead = lp->txrtail = &(lp->txring[0]); + } + + /* Initialise the card. */ + /* (I'm not really sure if it's a good idea to do this during probing, but + * like this it's assured that the lan connection type can be sensed + * correctly) + */ + hp100_hwinit(dev); + + /* Try to find out which kind of LAN the card is connected to. */ + lp->lan_type = hp100_sense_lan(dev); + + /* Print out a message what about what we think we have probed. */ + printk("hp100: at 0x%x, IRQ %d, ", ioaddr, dev->irq); + switch (bus) { + case HP100_BUS_EISA: + printk("EISA"); + break; + case HP100_BUS_PCI: + printk("PCI"); + break; + default: + printk("ISA"); + break; + } + printk(" bus, %dk SRAM (rx/tx %d%%).\n", lp->memory_size >> 10, lp->rx_ratio); + + if (lp->mode == 2) { /* memory mapped */ + printk("hp100: Memory area at 0x%lx-0x%lx", mem_ptr_phys, + (mem_ptr_phys + (mem_ptr_phys > 0x100000 ? (u_long) lp->memory_size : 16 * 1024)) - 1); + if (mem_ptr_virt) + printk(" (virtual base %p)", mem_ptr_virt); + printk(".\n"); + + /* Set for info when doing ifconfig */ + dev->mem_start = mem_ptr_phys; + dev->mem_end = mem_ptr_phys + lp->memory_size; + } + + printk("hp100: "); + if (lp->lan_type != HP100_LAN_ERR) + printk("Adapter is attached to "); + switch (lp->lan_type) { + case HP100_LAN_100: + printk("100Mb/s Voice Grade AnyLAN network.\n"); + break; + case HP100_LAN_10: + printk("10Mb/s network (10baseT).\n"); + break; + case HP100_LAN_COAX: + printk("10Mb/s network (coax).\n"); + break; + default: + printk("Warning! Link down.\n"); + } + + err = register_netdev(dev); + if (err) + goto out3; + + return 0; +out3: + if (local_mode == 1) + pci_free_consistent(lp->pci_dev, MAX_RINGSIZE + 0x0f, + lp->page_vaddr_algn, + virt_to_whatever(dev, lp->page_vaddr_algn)); +out_mem_ptr: + if (mem_ptr_virt) + iounmap(mem_ptr_virt); +out2: + release_region(ioaddr, HP100_REGION_SIZE); +out1: + return err; +} + +/* This procedure puts the card into a stable init state */ +static void hp100_hwinit(struct net_device *dev) +{ + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + +#ifdef HP100_DEBUG_B + hp100_outw(0x4202, TRACE); + printk("hp100: %s: hwinit\n", dev->name); +#endif + + /* Initialise the card. -------------------------------------------- */ + + /* Clear all pending Ints and disable Ints */ + hp100_page(PERFORMANCE); + hp100_outw(0xfefe, IRQ_MASK); /* mask off all ints */ + hp100_outw(0xffff, IRQ_STATUS); /* clear all pending ints */ + + hp100_outw(HP100_INT_EN | HP100_RESET_LB, OPTION_LSW); + hp100_outw(HP100_TRI_INT | HP100_SET_HB, OPTION_LSW); + + if (lp->mode == 1) { + hp100_BM_shutdown(dev); /* disables BM, puts cascade in reset */ + wait(); + } else { + hp100_outw(HP100_INT_EN | HP100_RESET_LB, OPTION_LSW); + hp100_cascade_reset(dev, 1); + hp100_page(MAC_CTRL); + hp100_andb(~(HP100_RX_EN | HP100_TX_EN), MAC_CFG_1); + } + + /* Initiate EEPROM reload */ + hp100_load_eeprom(dev, 0); + + wait(); + + /* Go into reset again. */ + hp100_cascade_reset(dev, 1); + + /* Set Option Registers to a safe state */ + hp100_outw(HP100_DEBUG_EN | + HP100_RX_HDR | + HP100_EE_EN | + HP100_BM_WRITE | + HP100_BM_READ | HP100_RESET_HB | + HP100_FAKE_INT | + HP100_INT_EN | + HP100_MEM_EN | + HP100_IO_EN | HP100_RESET_LB, OPTION_LSW); + + hp100_outw(HP100_TRI_INT | + HP100_MMAP_DIS | HP100_SET_HB, OPTION_LSW); + + hp100_outb(HP100_PRIORITY_TX | + HP100_ADV_NXT_PKT | + HP100_TX_CMD | HP100_RESET_LB, OPTION_MSW); + + /* TODO: Configure MMU for Ram Test. */ + /* TODO: Ram Test. */ + + /* Re-check if adapter is still at same i/o location */ + /* (If the base i/o in eeprom has been changed but the */ + /* registers had not been changed, a reload of the eeprom */ + /* would move the adapter to the address stored in eeprom */ + + /* TODO: Code to implement. */ + + /* Until here it was code from HWdiscover procedure. */ + /* Next comes code from mmuinit procedure of SCO BM driver which is + * called from HWconfigure in the SCO driver. */ + + /* Initialise MMU, eventually switch on Busmaster Mode, initialise + * multicast filter... + */ + hp100_mmuinit(dev); + + /* We don't turn the interrupts on here - this is done by start_interface. */ + wait(); /* TODO: Do we really need this? */ + + /* Enable Hardware (e.g. unreset) */ + hp100_cascade_reset(dev, 0); + + /* ------- initialisation complete ----------- */ + + /* Finally try to log in the Hub if there may be a VG connection. */ + if ((lp->lan_type == HP100_LAN_100) || (lp->lan_type == HP100_LAN_ERR)) + hp100_login_to_vg_hub(dev, 0); /* relogin */ + +} + + +/* + * mmuinit - Reinitialise Cascade MMU and MAC settings. + * Note: Must already be in reset and leaves card in reset. + */ +static void hp100_mmuinit(struct net_device *dev) +{ + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + int i; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4203, TRACE); + printk("hp100: %s: mmuinit\n", dev->name); +#endif + +#ifdef HP100_DEBUG + if (0 != (hp100_inw(OPTION_LSW) & HP100_HW_RST)) { + printk("hp100: %s: Not in reset when entering mmuinit. Fix me.\n", dev->name); + return; + } +#endif + + /* Make sure IRQs are masked off and ack'ed. */ + hp100_page(PERFORMANCE); + hp100_outw(0xfefe, IRQ_MASK); /* mask off all ints */ + hp100_outw(0xffff, IRQ_STATUS); /* ack IRQ */ + + /* + * Enable Hardware + * - Clear Debug En, Rx Hdr Pipe, EE En, I/O En, Fake Int and Intr En + * - Set Tri-State Int, Bus Master Rd/Wr, and Mem Map Disable + * - Clear Priority, Advance Pkt and Xmit Cmd + */ + + hp100_outw(HP100_DEBUG_EN | + HP100_RX_HDR | + HP100_EE_EN | HP100_RESET_HB | + HP100_IO_EN | + HP100_FAKE_INT | + HP100_INT_EN | HP100_RESET_LB, OPTION_LSW); + + hp100_outw(HP100_TRI_INT | HP100_SET_HB, OPTION_LSW); + + if (lp->mode == 1) { /* busmaster */ + hp100_outw(HP100_BM_WRITE | + HP100_BM_READ | + HP100_MMAP_DIS | HP100_SET_HB, OPTION_LSW); + } else if (lp->mode == 2) { /* memory mapped */ + hp100_outw(HP100_BM_WRITE | + HP100_BM_READ | HP100_RESET_HB, OPTION_LSW); + hp100_outw(HP100_MMAP_DIS | HP100_RESET_HB, OPTION_LSW); + hp100_outw(HP100_MEM_EN | HP100_SET_LB, OPTION_LSW); + hp100_outw(HP100_IO_EN | HP100_SET_LB, OPTION_LSW); + } else if (lp->mode == 3) { /* i/o mapped mode */ + hp100_outw(HP100_MMAP_DIS | HP100_SET_HB | + HP100_IO_EN | HP100_SET_LB, OPTION_LSW); + } + + hp100_page(HW_MAP); + hp100_outb(0, EARLYRXCFG); + hp100_outw(0, EARLYTXCFG); + + /* + * Enable Bus Master mode + */ + if (lp->mode == 1) { /* busmaster */ + /* Experimental: Set some PCI configuration bits */ + hp100_page(HW_MAP); + hp100_andb(~HP100_PDL_USE3, MODECTRL1); /* BM engine read maximum */ + hp100_andb(~HP100_TX_DUALQ, MODECTRL1); /* No Queue for Priority TX */ + + /* PCI Bus failures should result in a Misc. Interrupt */ + hp100_orb(HP100_EN_BUS_FAIL, MODECTRL2); + + hp100_outw(HP100_BM_READ | HP100_BM_WRITE | HP100_SET_HB, OPTION_LSW); + hp100_page(HW_MAP); + /* Use Burst Mode and switch on PAGE_CK */ + hp100_orb(HP100_BM_BURST_RD | HP100_BM_BURST_WR, BM); + if ((lp->chip == HP100_CHIPID_RAINIER) || (lp->chip == HP100_CHIPID_SHASTA)) + hp100_orb(HP100_BM_PAGE_CK, BM); + hp100_orb(HP100_BM_MASTER, BM); + } else { /* not busmaster */ + + hp100_page(HW_MAP); + hp100_andb(~HP100_BM_MASTER, BM); + } + + /* + * Divide card memory into regions for Rx, Tx and, if non-ETR chip, PDLs + */ + hp100_page(MMU_CFG); + if (lp->mode == 1) { /* only needed for Busmaster */ + int xmit_stop, recv_stop; + + if ((lp->chip == HP100_CHIPID_RAINIER) || + (lp->chip == HP100_CHIPID_SHASTA)) { + int pdl_stop; + + /* + * Each pdl is 508 bytes long. (63 frags * 4 bytes for address and + * 4 bytes for header). We will leave NUM_RXPDLS * 508 (rounded + * to the next higher 1k boundary) bytes for the rx-pdl's + * Note: For non-etr chips the transmit stop register must be + * programmed on a 1k boundary, i.e. bits 9:0 must be zero. + */ + pdl_stop = lp->memory_size; + xmit_stop = (pdl_stop - 508 * (MAX_RX_PDL) - 16) & ~(0x03ff); + recv_stop = (xmit_stop * (lp->rx_ratio) / 100) & ~(0x03ff); + hp100_outw((pdl_stop >> 4) - 1, PDL_MEM_STOP); +#ifdef HP100_DEBUG_BM + printk("hp100: %s: PDL_STOP = 0x%x\n", dev->name, pdl_stop); +#endif + } else { + /* ETR chip (Lassen) in busmaster mode */ + xmit_stop = (lp->memory_size) - 1; + recv_stop = ((lp->memory_size * lp->rx_ratio) / 100) & ~(0x03ff); + } + + hp100_outw(xmit_stop >> 4, TX_MEM_STOP); + hp100_outw(recv_stop >> 4, RX_MEM_STOP); +#ifdef HP100_DEBUG_BM + printk("hp100: %s: TX_STOP = 0x%x\n", dev->name, xmit_stop >> 4); + printk("hp100: %s: RX_STOP = 0x%x\n", dev->name, recv_stop >> 4); +#endif + } else { + /* Slave modes (memory mapped and programmed io) */ + hp100_outw((((lp->memory_size * lp->rx_ratio) / 100) >> 4), RX_MEM_STOP); + hp100_outw(((lp->memory_size - 1) >> 4), TX_MEM_STOP); +#ifdef HP100_DEBUG + printk("hp100: %s: TX_MEM_STOP: 0x%x\n", dev->name, hp100_inw(TX_MEM_STOP)); + printk("hp100: %s: RX_MEM_STOP: 0x%x\n", dev->name, hp100_inw(RX_MEM_STOP)); +#endif + } + + /* Write MAC address into page 1 */ + hp100_page(MAC_ADDRESS); + for (i = 0; i < 6; i++) + hp100_outb(dev->dev_addr[i], MAC_ADDR + i); + + /* Zero the multicast hash registers */ + for (i = 0; i < 8; i++) + hp100_outb(0x0, HASH_BYTE0 + i); + + /* Set up MAC defaults */ + hp100_page(MAC_CTRL); + + /* Go to LAN Page and zero all filter bits */ + /* Zero accept error, accept multicast, accept broadcast and accept */ + /* all directed packet bits */ + hp100_andb(~(HP100_RX_EN | + HP100_TX_EN | + HP100_ACC_ERRORED | + HP100_ACC_MC | + HP100_ACC_BC | HP100_ACC_PHY), MAC_CFG_1); + + hp100_outb(0x00, MAC_CFG_2); + + /* Zero the frame format bit. This works around a training bug in the */ + /* new hubs. */ + hp100_outb(0x00, VG_LAN_CFG_2); /* (use 802.3) */ + + if (lp->priority_tx) + hp100_outb(HP100_PRIORITY_TX | HP100_SET_LB, OPTION_MSW); + else + hp100_outb(HP100_PRIORITY_TX | HP100_RESET_LB, OPTION_MSW); + + hp100_outb(HP100_ADV_NXT_PKT | + HP100_TX_CMD | HP100_RESET_LB, OPTION_MSW); + + /* If busmaster, initialize the PDLs */ + if (lp->mode == 1) + hp100_init_pdls(dev); + + /* Go to performance page and initialize isr and imr registers */ + hp100_page(PERFORMANCE); + hp100_outw(0xfefe, IRQ_MASK); /* mask off all ints */ + hp100_outw(0xffff, IRQ_STATUS); /* ack IRQ */ +} + +/* + * open/close functions + */ + +static int hp100_open(struct net_device *dev) +{ + struct hp100_private *lp = netdev_priv(dev); +#ifdef HP100_DEBUG_B + int ioaddr = dev->base_addr; +#endif + +#ifdef HP100_DEBUG_B + hp100_outw(0x4204, TRACE); + printk("hp100: %s: open\n", dev->name); +#endif + + /* New: if bus is PCI or EISA, interrupts might be shared interrupts */ + if (request_irq(dev->irq, hp100_interrupt, + lp->bus == HP100_BUS_PCI || lp->bus == + HP100_BUS_EISA ? IRQF_SHARED : 0, + dev->name, dev)) { + printk("hp100: %s: unable to get IRQ %d\n", dev->name, dev->irq); + return -EAGAIN; + } + + netif_trans_update(dev); /* prevent tx timeout */ + netif_start_queue(dev); + + lp->lan_type = hp100_sense_lan(dev); + lp->mac1_mode = HP100_MAC1MODE3; + lp->mac2_mode = HP100_MAC2MODE3; + memset(&lp->hash_bytes, 0x00, 8); + + hp100_stop_interface(dev); + + hp100_hwinit(dev); + + hp100_start_interface(dev); /* sets mac modes, enables interrupts */ + + return 0; +} + +/* The close function is called when the interface is to be brought down */ +static int hp100_close(struct net_device *dev) +{ + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + +#ifdef HP100_DEBUG_B + hp100_outw(0x4205, TRACE); + printk("hp100: %s: close\n", dev->name); +#endif + + hp100_page(PERFORMANCE); + hp100_outw(0xfefe, IRQ_MASK); /* mask off all IRQs */ + + hp100_stop_interface(dev); + + if (lp->lan_type == HP100_LAN_100) + lp->hub_status = hp100_login_to_vg_hub(dev, 0); + + netif_stop_queue(dev); + + free_irq(dev->irq, dev); + +#ifdef HP100_DEBUG + printk("hp100: %s: close LSW = 0x%x\n", dev->name, + hp100_inw(OPTION_LSW)); +#endif + + return 0; +} + + +/* + * Configure the PDL Rx rings and LAN + */ +static void hp100_init_pdls(struct net_device *dev) +{ + struct hp100_private *lp = netdev_priv(dev); + hp100_ring_t *ringptr; + u_int *pageptr; /* Warning : increment by 4 - Jean II */ + int i; + +#ifdef HP100_DEBUG_B + int ioaddr = dev->base_addr; +#endif + +#ifdef HP100_DEBUG_B + hp100_outw(0x4206, TRACE); + printk("hp100: %s: init pdls\n", dev->name); +#endif + + if (!lp->page_vaddr_algn) + printk("hp100: %s: Warning: lp->page_vaddr_algn not initialised!\n", dev->name); + else { + /* pageptr shall point into the DMA accessible memory region */ + /* we use this pointer to status the upper limit of allocated */ + /* memory in the allocated page. */ + /* note: align the pointers to the pci cache line size */ + memset(lp->page_vaddr_algn, 0, MAX_RINGSIZE); /* Zero Rx/Tx ring page */ + pageptr = lp->page_vaddr_algn; + + lp->rxrcommit = 0; + ringptr = lp->rxrhead = lp->rxrtail = &(lp->rxring[0]); + + /* Initialise Rx Ring */ + for (i = MAX_RX_PDL - 1; i >= 0; i--) { + lp->rxring[i].next = ringptr; + ringptr = &(lp->rxring[i]); + pageptr += hp100_init_rxpdl(dev, ringptr, pageptr); + } + + /* Initialise Tx Ring */ + lp->txrcommit = 0; + ringptr = lp->txrhead = lp->txrtail = &(lp->txring[0]); + for (i = MAX_TX_PDL - 1; i >= 0; i--) { + lp->txring[i].next = ringptr; + ringptr = &(lp->txring[i]); + pageptr += hp100_init_txpdl(dev, ringptr, pageptr); + } + } +} + + +/* These functions "format" the entries in the pdl structure */ +/* They return how much memory the fragments need. */ +static int hp100_init_rxpdl(struct net_device *dev, + register hp100_ring_t * ringptr, + register u32 * pdlptr) +{ + /* pdlptr is starting address for this pdl */ + + if (0 != (((unsigned long) pdlptr) & 0xf)) + printk("hp100: %s: Init rxpdl: Unaligned pdlptr 0x%lx.\n", + dev->name, (unsigned long) pdlptr); + + ringptr->pdl = pdlptr + 1; + ringptr->pdl_paddr = virt_to_whatever(dev, pdlptr + 1); + ringptr->skb = NULL; + + /* + * Write address and length of first PDL Fragment (which is used for + * storing the RX-Header + * We use the 4 bytes _before_ the PDH in the pdl memory area to + * store this information. (PDH is at offset 0x04) + */ + /* Note that pdlptr+1 and not pdlptr is the pointer to the PDH */ + + *(pdlptr + 2) = (u_int) virt_to_whatever(dev, pdlptr); /* Address Frag 1 */ + *(pdlptr + 3) = 4; /* Length Frag 1 */ + + return roundup(MAX_RX_FRAG * 2 + 2, 4); +} + + +static int hp100_init_txpdl(struct net_device *dev, + register hp100_ring_t * ringptr, + register u32 * pdlptr) +{ + if (0 != (((unsigned long) pdlptr) & 0xf)) + printk("hp100: %s: Init txpdl: Unaligned pdlptr 0x%lx.\n", dev->name, (unsigned long) pdlptr); + + ringptr->pdl = pdlptr; /* +1; */ + ringptr->pdl_paddr = virt_to_whatever(dev, pdlptr); /* +1 */ + ringptr->skb = NULL; + + return roundup(MAX_TX_FRAG * 2 + 2, 4); +} + +/* + * hp100_build_rx_pdl allocates an skb_buff of maximum size plus two bytes + * for possible odd word alignment rounding up to next dword and set PDL + * address for fragment#2 + * Returns: 0 if unable to allocate skb_buff + * 1 if successful + */ +static int hp100_build_rx_pdl(hp100_ring_t * ringptr, + struct net_device *dev) +{ +#ifdef HP100_DEBUG_B + int ioaddr = dev->base_addr; +#endif +#ifdef HP100_DEBUG_BM + u_int *p; +#endif + +#ifdef HP100_DEBUG_B + hp100_outw(0x4207, TRACE); + printk("hp100: %s: build rx pdl\n", dev->name); +#endif + + /* Allocate skb buffer of maximum size */ + /* Note: This depends on the alloc_skb functions allocating more + * space than requested, i.e. aligning to 16bytes */ + + ringptr->skb = netdev_alloc_skb(dev, roundup(MAX_ETHER_SIZE + 2, 4)); + + if (NULL != ringptr->skb) { + /* + * Reserve 2 bytes at the head of the buffer to land the IP header + * on a long word boundary (According to the Network Driver section + * in the Linux KHG, this should help to increase performance.) + */ + skb_reserve(ringptr->skb, 2); + + ringptr->skb->data = skb_put(ringptr->skb, MAX_ETHER_SIZE); + + /* ringptr->pdl points to the beginning of the PDL, i.e. the PDH */ + /* Note: 1st Fragment is used for the 4 byte packet status + * (receive header). Its PDL entries are set up by init_rxpdl. So + * here we only have to set up the PDL fragment entries for the data + * part. Those 4 bytes will be stored in the DMA memory region + * directly before the PDL. + */ +#ifdef HP100_DEBUG_BM + printk("hp100: %s: build_rx_pdl: PDH@0x%x, skb->data (len %d) at 0x%x\n", + dev->name, (u_int) ringptr->pdl, + roundup(MAX_ETHER_SIZE + 2, 4), + (unsigned int) ringptr->skb->data); +#endif + + /* Conversion to new PCI API : map skbuf data to PCI bus. + * Doc says it's OK for EISA as well - Jean II */ + ringptr->pdl[0] = 0x00020000; /* Write PDH */ + ringptr->pdl[3] = pdl_map_data(netdev_priv(dev), + ringptr->skb->data); + ringptr->pdl[4] = MAX_ETHER_SIZE; /* Length of Data */ + +#ifdef HP100_DEBUG_BM + for (p = (ringptr->pdl); p < (ringptr->pdl + 5); p++) + printk("hp100: %s: Adr 0x%.8x = 0x%.8x\n", dev->name, (u_int) p, (u_int) * p); +#endif + return 1; + } + /* else: */ + /* alloc_skb failed (no memory) -> still can receive the header + * fragment into PDL memory. make PDL safe by clearing msgptr and + * making the PDL only 1 fragment (i.e. the 4 byte packet status) + */ +#ifdef HP100_DEBUG_BM + printk("hp100: %s: build_rx_pdl: PDH@0x%x, No space for skb.\n", dev->name, (u_int) ringptr->pdl); +#endif + + ringptr->pdl[0] = 0x00010000; /* PDH: Count=1 Fragment */ + + return 0; +} + +/* + * hp100_rxfill - attempt to fill the Rx Ring will empty skb's + * + * Makes assumption that skb's are always contiguous memory areas and + * therefore PDLs contain only 2 physical fragments. + * - While the number of Rx PDLs with buffers is less than maximum + * a. Get a maximum packet size skb + * b. Put the physical address of the buffer into the PDL. + * c. Output physical address of PDL to adapter. + */ +static void hp100_rxfill(struct net_device *dev) +{ + int ioaddr = dev->base_addr; + + struct hp100_private *lp = netdev_priv(dev); + hp100_ring_t *ringptr; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4208, TRACE); + printk("hp100: %s: rxfill\n", dev->name); +#endif + + hp100_page(PERFORMANCE); + + while (lp->rxrcommit < MAX_RX_PDL) { + /* + ** Attempt to get a buffer and build a Rx PDL. + */ + ringptr = lp->rxrtail; + if (0 == hp100_build_rx_pdl(ringptr, dev)) { + return; /* None available, return */ + } + + /* Hand this PDL over to the card */ + /* Note: This needs performance page selected! */ +#ifdef HP100_DEBUG_BM + printk("hp100: %s: rxfill: Hand to card: pdl #%d @0x%x phys:0x%x, buffer: 0x%x\n", + dev->name, lp->rxrcommit, (u_int) ringptr->pdl, + (u_int) ringptr->pdl_paddr, (u_int) ringptr->pdl[3]); +#endif + + hp100_outl((u32) ringptr->pdl_paddr, RX_PDA); + + lp->rxrcommit += 1; + lp->rxrtail = ringptr->next; + } +} + +/* + * BM_shutdown - shutdown bus mastering and leave chip in reset state + */ + +static void hp100_BM_shutdown(struct net_device *dev) +{ + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + unsigned long time; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4209, TRACE); + printk("hp100: %s: bm shutdown\n", dev->name); +#endif + + hp100_page(PERFORMANCE); + hp100_outw(0xfefe, IRQ_MASK); /* mask off all ints */ + hp100_outw(0xffff, IRQ_STATUS); /* Ack all ints */ + + /* Ensure Interrupts are off */ + hp100_outw(HP100_INT_EN | HP100_RESET_LB, OPTION_LSW); + + /* Disable all MAC activity */ + hp100_page(MAC_CTRL); + hp100_andb(~(HP100_RX_EN | HP100_TX_EN), MAC_CFG_1); /* stop rx/tx */ + + /* If cascade MMU is not already in reset */ + if (0 != (hp100_inw(OPTION_LSW) & HP100_HW_RST)) { + /* Wait 1.3ms (10Mb max packet time) to ensure MAC is idle so + * MMU pointers will not be reset out from underneath + */ + hp100_page(MAC_CTRL); + for (time = 0; time < 5000; time++) { + if ((hp100_inb(MAC_CFG_1) & (HP100_TX_IDLE | HP100_RX_IDLE)) == (HP100_TX_IDLE | HP100_RX_IDLE)) + break; + } + + /* Shutdown algorithm depends on the generation of Cascade */ + if (lp->chip == HP100_CHIPID_LASSEN) { /* ETR shutdown/reset */ + /* Disable Busmaster mode and wait for bit to go to zero. */ + hp100_page(HW_MAP); + hp100_andb(~HP100_BM_MASTER, BM); + /* 100 ms timeout */ + for (time = 0; time < 32000; time++) { + if (0 == (hp100_inb(BM) & HP100_BM_MASTER)) + break; + } + } else { /* Shasta or Rainier Shutdown/Reset */ + /* To ensure all bus master inloading activity has ceased, + * wait for no Rx PDAs or no Rx packets on card. + */ + hp100_page(PERFORMANCE); + /* 100 ms timeout */ + for (time = 0; time < 10000; time++) { + /* RX_PDL: PDLs not executed. */ + /* RX_PKT_CNT: RX'd packets on card. */ + if ((hp100_inb(RX_PDL) == 0) && (hp100_inb(RX_PKT_CNT) == 0)) + break; + } + + if (time >= 10000) + printk("hp100: %s: BM shutdown error.\n", dev->name); + + /* To ensure all bus master outloading activity has ceased, + * wait until the Tx PDA count goes to zero or no more Tx space + * available in the Tx region of the card. + */ + /* 100 ms timeout */ + for (time = 0; time < 10000; time++) { + if ((0 == hp100_inb(TX_PKT_CNT)) && + (0 != (hp100_inb(TX_MEM_FREE) & HP100_AUTO_COMPARE))) + break; + } + + /* Disable Busmaster mode */ + hp100_page(HW_MAP); + hp100_andb(~HP100_BM_MASTER, BM); + } /* end of shutdown procedure for non-etr parts */ + + hp100_cascade_reset(dev, 1); + } + hp100_page(PERFORMANCE); + /* hp100_outw( HP100_BM_READ | HP100_BM_WRITE | HP100_RESET_HB, OPTION_LSW ); */ + /* Busmaster mode should be shut down now. */ +} + +static int hp100_check_lan(struct net_device *dev) +{ + struct hp100_private *lp = netdev_priv(dev); + + if (lp->lan_type < 0) { /* no LAN type detected yet? */ + hp100_stop_interface(dev); + if ((lp->lan_type = hp100_sense_lan(dev)) < 0) { + printk("hp100: %s: no connection found - check wire\n", dev->name); + hp100_start_interface(dev); /* 10Mb/s RX packets maybe handled */ + return -EIO; + } + if (lp->lan_type == HP100_LAN_100) + lp->hub_status = hp100_login_to_vg_hub(dev, 0); /* relogin */ + hp100_start_interface(dev); + } + return 0; +} + +/* + * transmit functions + */ + +/* tx function for busmaster mode */ +static netdev_tx_t hp100_start_xmit_bm(struct sk_buff *skb, + struct net_device *dev) +{ + unsigned long flags; + int i, ok_flag; + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + hp100_ring_t *ringptr; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4210, TRACE); + printk("hp100: %s: start_xmit_bm\n", dev->name); +#endif + if (skb->len <= 0) + goto drop; + + if (lp->chip == HP100_CHIPID_SHASTA && skb_padto(skb, ETH_ZLEN)) + return NETDEV_TX_OK; + + /* Get Tx ring tail pointer */ + if (lp->txrtail->next == lp->txrhead) { + /* No memory. */ +#ifdef HP100_DEBUG + printk("hp100: %s: start_xmit_bm: No TX PDL available.\n", dev->name); +#endif + /* not waited long enough since last tx? */ + if (time_before(jiffies, dev_trans_start(dev) + HZ)) + goto drop; + + if (hp100_check_lan(dev)) + goto drop; + + if (lp->lan_type == HP100_LAN_100 && lp->hub_status < 0) { + /* we have a 100Mb/s adapter but it isn't connected to hub */ + printk("hp100: %s: login to 100Mb/s hub retry\n", dev->name); + hp100_stop_interface(dev); + lp->hub_status = hp100_login_to_vg_hub(dev, 0); + hp100_start_interface(dev); + } else { + spin_lock_irqsave(&lp->lock, flags); + hp100_ints_off(); /* Useful ? Jean II */ + i = hp100_sense_lan(dev); + hp100_ints_on(); + spin_unlock_irqrestore(&lp->lock, flags); + if (i == HP100_LAN_ERR) + printk("hp100: %s: link down detected\n", dev->name); + else if (lp->lan_type != i) { /* cable change! */ + /* it's very hard - all network settings must be changed!!! */ + printk("hp100: %s: cable change 10Mb/s <-> 100Mb/s detected\n", dev->name); + lp->lan_type = i; + hp100_stop_interface(dev); + if (lp->lan_type == HP100_LAN_100) + lp->hub_status = hp100_login_to_vg_hub(dev, 0); + hp100_start_interface(dev); + } else { + printk("hp100: %s: interface reset\n", dev->name); + hp100_stop_interface(dev); + if (lp->lan_type == HP100_LAN_100) + lp->hub_status = hp100_login_to_vg_hub(dev, 0); + hp100_start_interface(dev); + } + } + + goto drop; + } + + /* + * we have to turn int's off before modifying this, otherwise + * a tx_pdl_cleanup could occur at the same time + */ + spin_lock_irqsave(&lp->lock, flags); + ringptr = lp->txrtail; + lp->txrtail = ringptr->next; + + /* Check whether packet has minimal packet size */ + ok_flag = skb->len >= HP100_MIN_PACKET_SIZE; + i = ok_flag ? skb->len : HP100_MIN_PACKET_SIZE; + + ringptr->skb = skb; + ringptr->pdl[0] = ((1 << 16) | i); /* PDH: 1 Fragment & length */ + if (lp->chip == HP100_CHIPID_SHASTA) { + /* TODO:Could someone who has the EISA card please check if this works? */ + ringptr->pdl[2] = i; + } else { /* Lassen */ + /* In the PDL, don't use the padded size but the real packet size: */ + ringptr->pdl[2] = skb->len; /* 1st Frag: Length of frag */ + } + /* Conversion to new PCI API : map skbuf data to PCI bus. + * Doc says it's OK for EISA as well - Jean II */ + ringptr->pdl[1] = ((u32) pci_map_single(lp->pci_dev, skb->data, ringptr->pdl[2], PCI_DMA_TODEVICE)); /* 1st Frag: Adr. of data */ + + /* Hand this PDL to the card. */ + hp100_outl(ringptr->pdl_paddr, TX_PDA_L); /* Low Prio. Queue */ + + lp->txrcommit++; + + dev->stats.tx_packets++; + dev->stats.tx_bytes += skb->len; + + spin_unlock_irqrestore(&lp->lock, flags); + + return NETDEV_TX_OK; + +drop: + dev_kfree_skb(skb); + return NETDEV_TX_OK; +} + + +/* clean_txring checks if packets have been sent by the card by reading + * the TX_PDL register from the performance page and comparing it to the + * number of committed packets. It then frees the skb's of the packets that + * obviously have been sent to the network. + * + * Needs the PERFORMANCE page selected. + */ +static void hp100_clean_txring(struct net_device *dev) +{ + struct hp100_private *lp = netdev_priv(dev); + int ioaddr = dev->base_addr; + int donecount; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4211, TRACE); + printk("hp100: %s: clean txring\n", dev->name); +#endif + + /* How many PDLs have been transmitted? */ + donecount = (lp->txrcommit) - hp100_inb(TX_PDL); + +#ifdef HP100_DEBUG + if (donecount > MAX_TX_PDL) + printk("hp100: %s: Warning: More PDLs transmitted than committed to card???\n", dev->name); +#endif + + for (; 0 != donecount; donecount--) { +#ifdef HP100_DEBUG_BM + printk("hp100: %s: Free skb: data @0x%.8x txrcommit=0x%x TXPDL=0x%x, done=0x%x\n", + dev->name, (u_int) lp->txrhead->skb->data, + lp->txrcommit, hp100_inb(TX_PDL), donecount); +#endif + /* Conversion to new PCI API : NOP */ + pci_unmap_single(lp->pci_dev, (dma_addr_t) lp->txrhead->pdl[1], lp->txrhead->pdl[2], PCI_DMA_TODEVICE); + dev_consume_skb_any(lp->txrhead->skb); + lp->txrhead->skb = NULL; + lp->txrhead = lp->txrhead->next; + lp->txrcommit--; + } +} + +/* tx function for slave modes */ +static netdev_tx_t hp100_start_xmit(struct sk_buff *skb, + struct net_device *dev) +{ + unsigned long flags; + int i, ok_flag; + int ioaddr = dev->base_addr; + u_short val; + struct hp100_private *lp = netdev_priv(dev); + +#ifdef HP100_DEBUG_B + hp100_outw(0x4212, TRACE); + printk("hp100: %s: start_xmit\n", dev->name); +#endif + if (skb->len <= 0) + goto drop; + + if (hp100_check_lan(dev)) + goto drop; + + /* If there is not enough free memory on the card... */ + i = hp100_inl(TX_MEM_FREE) & 0x7fffffff; + if (!(((i / 2) - 539) > (skb->len + 16) && (hp100_inb(TX_PKT_CNT) < 255))) { +#ifdef HP100_DEBUG + printk("hp100: %s: start_xmit: tx free mem = 0x%x\n", dev->name, i); +#endif + /* not waited long enough since last failed tx try? */ + if (time_before(jiffies, dev_trans_start(dev) + HZ)) { +#ifdef HP100_DEBUG + printk("hp100: %s: trans_start timing problem\n", + dev->name); +#endif + goto drop; + } + if (lp->lan_type == HP100_LAN_100 && lp->hub_status < 0) { + /* we have a 100Mb/s adapter but it isn't connected to hub */ + printk("hp100: %s: login to 100Mb/s hub retry\n", dev->name); + hp100_stop_interface(dev); + lp->hub_status = hp100_login_to_vg_hub(dev, 0); + hp100_start_interface(dev); + } else { + spin_lock_irqsave(&lp->lock, flags); + hp100_ints_off(); /* Useful ? Jean II */ + i = hp100_sense_lan(dev); + hp100_ints_on(); + spin_unlock_irqrestore(&lp->lock, flags); + if (i == HP100_LAN_ERR) + printk("hp100: %s: link down detected\n", dev->name); + else if (lp->lan_type != i) { /* cable change! */ + /* it's very hard - all network setting must be changed!!! */ + printk("hp100: %s: cable change 10Mb/s <-> 100Mb/s detected\n", dev->name); + lp->lan_type = i; + hp100_stop_interface(dev); + if (lp->lan_type == HP100_LAN_100) + lp->hub_status = hp100_login_to_vg_hub(dev, 0); + hp100_start_interface(dev); + } else { + printk("hp100: %s: interface reset\n", dev->name); + hp100_stop_interface(dev); + if (lp->lan_type == HP100_LAN_100) + lp->hub_status = hp100_login_to_vg_hub(dev, 0); + hp100_start_interface(dev); + mdelay(1); + } + } + goto drop; + } + + for (i = 0; i < 6000 && (hp100_inb(OPTION_MSW) & HP100_TX_CMD); i++) { +#ifdef HP100_DEBUG_TX + printk("hp100: %s: start_xmit: busy\n", dev->name); +#endif + } + + spin_lock_irqsave(&lp->lock, flags); + hp100_ints_off(); + val = hp100_inw(IRQ_STATUS); + /* Ack / clear the interrupt TX_COMPLETE interrupt - this interrupt is set + * when the current packet being transmitted on the wire is completed. */ + hp100_outw(HP100_TX_COMPLETE, IRQ_STATUS); +#ifdef HP100_DEBUG_TX + printk("hp100: %s: start_xmit: irq_status=0x%.4x, irqmask=0x%.4x, len=%d\n", + dev->name, val, hp100_inw(IRQ_MASK), (int) skb->len); +#endif + + ok_flag = skb->len >= HP100_MIN_PACKET_SIZE; + i = ok_flag ? skb->len : HP100_MIN_PACKET_SIZE; + + hp100_outw(i, DATA32); /* tell card the total packet length */ + hp100_outw(i, FRAGMENT_LEN); /* and first/only fragment length */ + + if (lp->mode == 2) { /* memory mapped */ + /* Note: The J2585B needs alignment to 32bits here! */ + memcpy_toio(lp->mem_ptr_virt, skb->data, (skb->len + 3) & ~3); + if (!ok_flag) + memset_io(lp->mem_ptr_virt, 0, HP100_MIN_PACKET_SIZE - skb->len); + } else { /* programmed i/o */ + outsl(ioaddr + HP100_REG_DATA32, skb->data, + (skb->len + 3) >> 2); + if (!ok_flag) + for (i = (skb->len + 3) & ~3; i < HP100_MIN_PACKET_SIZE; i += 4) + hp100_outl(0, DATA32); + } + + hp100_outb(HP100_TX_CMD | HP100_SET_LB, OPTION_MSW); /* send packet */ + + dev->stats.tx_packets++; + dev->stats.tx_bytes += skb->len; + hp100_ints_on(); + spin_unlock_irqrestore(&lp->lock, flags); + + dev_consume_skb_any(skb); + +#ifdef HP100_DEBUG_TX + printk("hp100: %s: start_xmit: end\n", dev->name); +#endif + + return NETDEV_TX_OK; + +drop: + dev_kfree_skb(skb); + return NETDEV_TX_OK; + +} + + +/* + * Receive Function (Non-Busmaster mode) + * Called when an "Receive Packet" interrupt occurs, i.e. the receive + * packet counter is non-zero. + * For non-busmaster, this function does the whole work of transferring + * the packet to the host memory and then up to higher layers via skb + * and netif_rx. + */ + +static void hp100_rx(struct net_device *dev) +{ + int packets, pkt_len; + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + u_int header; + struct sk_buff *skb; + +#ifdef DEBUG_B + hp100_outw(0x4213, TRACE); + printk("hp100: %s: rx\n", dev->name); +#endif + + /* First get indication of received lan packet */ + /* RX_PKT_CND indicates the number of packets which have been fully */ + /* received onto the card but have not been fully transferred of the card */ + packets = hp100_inb(RX_PKT_CNT); +#ifdef HP100_DEBUG_RX + if (packets > 1) + printk("hp100: %s: rx: waiting packets = %d\n", dev->name, packets); +#endif + + while (packets-- > 0) { + /* If ADV_NXT_PKT is still set, we have to wait until the card has */ + /* really advanced to the next packet. */ + for (pkt_len = 0; pkt_len < 6000 && (hp100_inb(OPTION_MSW) & HP100_ADV_NXT_PKT); pkt_len++) { +#ifdef HP100_DEBUG_RX + printk ("hp100: %s: rx: busy, remaining packets = %d\n", dev->name, packets); +#endif + } + + /* First we get the header, which contains information about the */ + /* actual length of the received packet. */ + if (lp->mode == 2) { /* memory mapped mode */ + header = readl(lp->mem_ptr_virt); + } else /* programmed i/o */ + header = hp100_inl(DATA32); + + pkt_len = ((header & HP100_PKT_LEN_MASK) + 3) & ~3; + +#ifdef HP100_DEBUG_RX + printk("hp100: %s: rx: new packet - length=%d, errors=0x%x, dest=0x%x\n", + dev->name, header & HP100_PKT_LEN_MASK, + (header >> 16) & 0xfff8, (header >> 16) & 7); +#endif + + /* Now we allocate the skb and transfer the data into it. */ + skb = netdev_alloc_skb(dev, pkt_len + 2); + if (skb == NULL) { /* Not enough memory->drop packet */ +#ifdef HP100_DEBUG + printk("hp100: %s: rx: couldn't allocate a sk_buff of size %d\n", + dev->name, pkt_len); +#endif + dev->stats.rx_dropped++; + } else { /* skb successfully allocated */ + + u_char *ptr; + + skb_reserve(skb,2); + + /* ptr to start of the sk_buff data area */ + skb_put(skb, pkt_len); + ptr = skb->data; + + /* Now transfer the data from the card into that area */ + if (lp->mode == 2) + memcpy_fromio(ptr, lp->mem_ptr_virt,pkt_len); + else /* io mapped */ + insl(ioaddr + HP100_REG_DATA32, ptr, pkt_len >> 2); + + skb->protocol = eth_type_trans(skb, dev); + +#ifdef HP100_DEBUG_RX + printk("hp100: %s: rx: %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x\n", + dev->name, ptr[0], ptr[1], ptr[2], ptr[3], + ptr[4], ptr[5], ptr[6], ptr[7], ptr[8], + ptr[9], ptr[10], ptr[11]); +#endif + netif_rx(skb); + dev->stats.rx_packets++; + dev->stats.rx_bytes += pkt_len; + } + + /* Indicate the card that we have got the packet */ + hp100_outb(HP100_ADV_NXT_PKT | HP100_SET_LB, OPTION_MSW); + + switch (header & 0x00070000) { + case (HP100_MULTI_ADDR_HASH << 16): + case (HP100_MULTI_ADDR_NO_HASH << 16): + dev->stats.multicast++; + break; + } + } /* end of while(there are packets) loop */ +#ifdef HP100_DEBUG_RX + printk("hp100_rx: %s: end\n", dev->name); +#endif +} + +/* + * Receive Function for Busmaster Mode + */ +static void hp100_rx_bm(struct net_device *dev) +{ + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + hp100_ring_t *ptr; + u_int header; + int pkt_len; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4214, TRACE); + printk("hp100: %s: rx_bm\n", dev->name); +#endif + +#ifdef HP100_DEBUG + if (0 == lp->rxrcommit) { + printk("hp100: %s: rx_bm called although no PDLs were committed to adapter?\n", dev->name); + return; + } else + /* RX_PKT_CNT states how many PDLs are currently formatted and available to + * the cards BM engine */ + if ((hp100_inw(RX_PKT_CNT) & 0x00ff) >= lp->rxrcommit) { + printk("hp100: %s: More packets received than committed? RX_PKT_CNT=0x%x, commit=0x%x\n", + dev->name, hp100_inw(RX_PKT_CNT) & 0x00ff, + lp->rxrcommit); + return; + } +#endif + + while ((lp->rxrcommit > hp100_inb(RX_PDL))) { + /* + * The packet was received into the pdl pointed to by lp->rxrhead ( + * the oldest pdl in the ring + */ + + /* First we get the header, which contains information about the */ + /* actual length of the received packet. */ + + ptr = lp->rxrhead; + + header = *(ptr->pdl - 1); + pkt_len = (header & HP100_PKT_LEN_MASK); + + /* Conversion to new PCI API : NOP */ + pci_unmap_single(lp->pci_dev, (dma_addr_t) ptr->pdl[3], MAX_ETHER_SIZE, PCI_DMA_FROMDEVICE); + +#ifdef HP100_DEBUG_BM + printk("hp100: %s: rx_bm: header@0x%x=0x%x length=%d, errors=0x%x, dest=0x%x\n", + dev->name, (u_int) (ptr->pdl - 1), (u_int) header, + pkt_len, (header >> 16) & 0xfff8, (header >> 16) & 7); + printk("hp100: %s: RX_PDL_COUNT:0x%x TX_PDL_COUNT:0x%x, RX_PKT_CNT=0x%x PDH=0x%x, Data@0x%x len=0x%x\n", + dev->name, hp100_inb(RX_PDL), hp100_inb(TX_PDL), + hp100_inb(RX_PKT_CNT), (u_int) * (ptr->pdl), + (u_int) * (ptr->pdl + 3), (u_int) * (ptr->pdl + 4)); +#endif + + if ((pkt_len >= MIN_ETHER_SIZE) && + (pkt_len <= MAX_ETHER_SIZE)) { + if (ptr->skb == NULL) { + printk("hp100: %s: rx_bm: skb null\n", dev->name); + /* can happen if we only allocated room for the pdh due to memory shortage. */ + dev->stats.rx_dropped++; + } else { + skb_trim(ptr->skb, pkt_len); /* Shorten it */ + ptr->skb->protocol = + eth_type_trans(ptr->skb, dev); + + netif_rx(ptr->skb); /* Up and away... */ + + dev->stats.rx_packets++; + dev->stats.rx_bytes += pkt_len; + } + + switch (header & 0x00070000) { + case (HP100_MULTI_ADDR_HASH << 16): + case (HP100_MULTI_ADDR_NO_HASH << 16): + dev->stats.multicast++; + break; + } + } else { +#ifdef HP100_DEBUG + printk("hp100: %s: rx_bm: Received bad packet (length=%d)\n", dev->name, pkt_len); +#endif + if (ptr->skb != NULL) + dev_kfree_skb_any(ptr->skb); + dev->stats.rx_errors++; + } + + lp->rxrhead = lp->rxrhead->next; + + /* Allocate a new rx PDL (so lp->rxrcommit stays the same) */ + if (0 == hp100_build_rx_pdl(lp->rxrtail, dev)) { + /* No space for skb, header can still be received. */ +#ifdef HP100_DEBUG + printk("hp100: %s: rx_bm: No space for new PDL.\n", dev->name); +#endif + return; + } else { /* successfully allocated new PDL - put it in ringlist at tail. */ + hp100_outl((u32) lp->rxrtail->pdl_paddr, RX_PDA); + lp->rxrtail = lp->rxrtail->next; + } + + } +} + +/* + * statistics + */ +static struct net_device_stats *hp100_get_stats(struct net_device *dev) +{ + unsigned long flags; + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + +#ifdef HP100_DEBUG_B + hp100_outw(0x4215, TRACE); +#endif + + spin_lock_irqsave(&lp->lock, flags); + hp100_ints_off(); /* Useful ? Jean II */ + hp100_update_stats(dev); + hp100_ints_on(); + spin_unlock_irqrestore(&lp->lock, flags); + return &(dev->stats); +} + +static void hp100_update_stats(struct net_device *dev) +{ + int ioaddr = dev->base_addr; + u_short val; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4216, TRACE); + printk("hp100: %s: update-stats\n", dev->name); +#endif + + /* Note: Statistics counters clear when read. */ + hp100_page(MAC_CTRL); + val = hp100_inw(DROPPED) & 0x0fff; + dev->stats.rx_errors += val; + dev->stats.rx_over_errors += val; + val = hp100_inb(CRC); + dev->stats.rx_errors += val; + dev->stats.rx_crc_errors += val; + val = hp100_inb(ABORT); + dev->stats.tx_errors += val; + dev->stats.tx_aborted_errors += val; + hp100_page(PERFORMANCE); +} + +static void hp100_misc_interrupt(struct net_device *dev) +{ +#ifdef HP100_DEBUG_B + int ioaddr = dev->base_addr; +#endif + +#ifdef HP100_DEBUG_B + int ioaddr = dev->base_addr; + hp100_outw(0x4216, TRACE); + printk("hp100: %s: misc_interrupt\n", dev->name); +#endif + + /* Note: Statistics counters clear when read. */ + dev->stats.rx_errors++; + dev->stats.tx_errors++; +} + +static void hp100_clear_stats(struct hp100_private *lp, int ioaddr) +{ + unsigned long flags; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4217, TRACE); + printk("hp100: %s: clear_stats\n", dev->name); +#endif + + spin_lock_irqsave(&lp->lock, flags); + hp100_page(MAC_CTRL); /* get all statistics bytes */ + hp100_inw(DROPPED); + hp100_inb(CRC); + hp100_inb(ABORT); + hp100_page(PERFORMANCE); + spin_unlock_irqrestore(&lp->lock, flags); +} + + +/* + * multicast setup + */ + +/* + * Set or clear the multicast filter for this adapter. + */ + +static void hp100_set_multicast_list(struct net_device *dev) +{ + unsigned long flags; + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + +#ifdef HP100_DEBUG_B + hp100_outw(0x4218, TRACE); + printk("hp100: %s: set_mc_list\n", dev->name); +#endif + + spin_lock_irqsave(&lp->lock, flags); + hp100_ints_off(); + hp100_page(MAC_CTRL); + hp100_andb(~(HP100_RX_EN | HP100_TX_EN), MAC_CFG_1); /* stop rx/tx */ + + if (dev->flags & IFF_PROMISC) { + lp->mac2_mode = HP100_MAC2MODE6; /* promiscuous mode = get all good */ + lp->mac1_mode = HP100_MAC1MODE6; /* packets on the net */ + memset(&lp->hash_bytes, 0xff, 8); + } else if (!netdev_mc_empty(dev) || (dev->flags & IFF_ALLMULTI)) { + lp->mac2_mode = HP100_MAC2MODE5; /* multicast mode = get packets for */ + lp->mac1_mode = HP100_MAC1MODE5; /* me, broadcasts and all multicasts */ +#ifdef HP100_MULTICAST_FILTER /* doesn't work!!! */ + if (dev->flags & IFF_ALLMULTI) { + /* set hash filter to receive all multicast packets */ + memset(&lp->hash_bytes, 0xff, 8); + } else { + int i, idx; + u_char *addrs; + struct netdev_hw_addr *ha; + + memset(&lp->hash_bytes, 0x00, 8); +#ifdef HP100_DEBUG + printk("hp100: %s: computing hash filter - mc_count = %i\n", + dev->name, netdev_mc_count(dev)); +#endif + netdev_for_each_mc_addr(ha, dev) { + addrs = ha->addr; +#ifdef HP100_DEBUG + printk("hp100: %s: multicast = %pM, ", + dev->name, addrs); +#endif + for (i = idx = 0; i < 6; i++) { + idx ^= *addrs++ & 0x3f; + printk(":%02x:", idx); + } +#ifdef HP100_DEBUG + printk("idx = %i\n", idx); +#endif + lp->hash_bytes[idx >> 3] |= (1 << (idx & 7)); + } + } +#else + memset(&lp->hash_bytes, 0xff, 8); +#endif + } else { + lp->mac2_mode = HP100_MAC2MODE3; /* normal mode = get packets for me */ + lp->mac1_mode = HP100_MAC1MODE3; /* and broadcasts */ + memset(&lp->hash_bytes, 0x00, 8); + } + + if (((hp100_inb(MAC_CFG_1) & 0x0f) != lp->mac1_mode) || + (hp100_inb(MAC_CFG_2) != lp->mac2_mode)) { + int i; + + hp100_outb(lp->mac2_mode, MAC_CFG_2); + hp100_andb(HP100_MAC1MODEMASK, MAC_CFG_1); /* clear mac1 mode bits */ + hp100_orb(lp->mac1_mode, MAC_CFG_1); /* and set the new mode */ + + hp100_page(MAC_ADDRESS); + for (i = 0; i < 8; i++) + hp100_outb(lp->hash_bytes[i], HASH_BYTE0 + i); +#ifdef HP100_DEBUG + printk("hp100: %s: mac1 = 0x%x, mac2 = 0x%x, multicast hash = %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x\n", + dev->name, lp->mac1_mode, lp->mac2_mode, + lp->hash_bytes[0], lp->hash_bytes[1], + lp->hash_bytes[2], lp->hash_bytes[3], + lp->hash_bytes[4], lp->hash_bytes[5], + lp->hash_bytes[6], lp->hash_bytes[7]); +#endif + + if (lp->lan_type == HP100_LAN_100) { +#ifdef HP100_DEBUG + printk("hp100: %s: 100VG MAC settings have changed - relogin.\n", dev->name); +#endif + lp->hub_status = hp100_login_to_vg_hub(dev, 1); /* force a relogin to the hub */ + } + } else { + int i; + u_char old_hash_bytes[8]; + + hp100_page(MAC_ADDRESS); + for (i = 0; i < 8; i++) + old_hash_bytes[i] = hp100_inb(HASH_BYTE0 + i); + if (memcmp(old_hash_bytes, &lp->hash_bytes, 8)) { + for (i = 0; i < 8; i++) + hp100_outb(lp->hash_bytes[i], HASH_BYTE0 + i); +#ifdef HP100_DEBUG + printk("hp100: %s: multicast hash = %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x\n", + dev->name, lp->hash_bytes[0], + lp->hash_bytes[1], lp->hash_bytes[2], + lp->hash_bytes[3], lp->hash_bytes[4], + lp->hash_bytes[5], lp->hash_bytes[6], + lp->hash_bytes[7]); +#endif + + if (lp->lan_type == HP100_LAN_100) { +#ifdef HP100_DEBUG + printk("hp100: %s: 100VG MAC settings have changed - relogin.\n", dev->name); +#endif + lp->hub_status = hp100_login_to_vg_hub(dev, 1); /* force a relogin to the hub */ + } + } + } + + hp100_page(MAC_CTRL); + hp100_orb(HP100_RX_EN | HP100_RX_IDLE | /* enable rx */ + HP100_TX_EN | HP100_TX_IDLE, MAC_CFG_1); /* enable tx */ + + hp100_page(PERFORMANCE); + hp100_ints_on(); + spin_unlock_irqrestore(&lp->lock, flags); +} + +/* + * hardware interrupt handling + */ + +static irqreturn_t hp100_interrupt(int irq, void *dev_id) +{ + struct net_device *dev = (struct net_device *) dev_id; + struct hp100_private *lp = netdev_priv(dev); + + int ioaddr; + u_int val; + + if (dev == NULL) + return IRQ_NONE; + ioaddr = dev->base_addr; + + spin_lock(&lp->lock); + + hp100_ints_off(); + +#ifdef HP100_DEBUG_B + hp100_outw(0x4219, TRACE); +#endif + + /* hp100_page( PERFORMANCE ); */ + val = hp100_inw(IRQ_STATUS); +#ifdef HP100_DEBUG_IRQ + printk("hp100: %s: mode=%x,IRQ_STAT=0x%.4x,RXPKTCNT=0x%.2x RXPDL=0x%.2x TXPKTCNT=0x%.2x TXPDL=0x%.2x\n", + dev->name, lp->mode, (u_int) val, hp100_inb(RX_PKT_CNT), + hp100_inb(RX_PDL), hp100_inb(TX_PKT_CNT), hp100_inb(TX_PDL)); +#endif + + if (val == 0) { /* might be a shared interrupt */ + spin_unlock(&lp->lock); + hp100_ints_on(); + return IRQ_NONE; + } + /* We're only interested in those interrupts we really enabled. */ + /* val &= hp100_inw( IRQ_MASK ); */ + + /* + * RX_PDL_FILL_COMPL is set whenever a RX_PDL has been executed. A RX_PDL + * is considered executed whenever the RX_PDL data structure is no longer + * needed. + */ + if (val & HP100_RX_PDL_FILL_COMPL) { + if (lp->mode == 1) + hp100_rx_bm(dev); + else { + printk("hp100: %s: rx_pdl_fill_compl interrupt although not busmaster?\n", dev->name); + } + } + + /* + * The RX_PACKET interrupt is set, when the receive packet counter is + * non zero. We use this interrupt for receiving in slave mode. In + * busmaster mode, we use it to make sure we did not miss any rx_pdl_fill + * interrupts. If rx_pdl_fill_compl is not set and rx_packet is set, then + * we somehow have missed a rx_pdl_fill_compl interrupt. + */ + + if (val & HP100_RX_PACKET) { /* Receive Packet Counter is non zero */ + if (lp->mode != 1) /* non busmaster */ + hp100_rx(dev); + else if (!(val & HP100_RX_PDL_FILL_COMPL)) { + /* Shouldn't happen - maybe we missed a RX_PDL_FILL Interrupt? */ + hp100_rx_bm(dev); + } + } + + /* + * Ack. that we have noticed the interrupt and thereby allow next one. + * Note that this is now done after the slave rx function, since first + * acknowledging and then setting ADV_NXT_PKT caused an extra interrupt + * on the J2573. + */ + hp100_outw(val, IRQ_STATUS); + + /* + * RX_ERROR is set when a packet is dropped due to no memory resources on + * the card or when a RCV_ERR occurs. + * TX_ERROR is set when a TX_ABORT condition occurs in the MAC->exists + * only in the 802.3 MAC and happens when 16 collisions occur during a TX + */ + if (val & (HP100_TX_ERROR | HP100_RX_ERROR)) { +#ifdef HP100_DEBUG_IRQ + printk("hp100: %s: TX/RX Error IRQ\n", dev->name); +#endif + hp100_update_stats(dev); + if (lp->mode == 1) { + hp100_rxfill(dev); + hp100_clean_txring(dev); + } + } + + /* + * RX_PDA_ZERO is set when the PDA count goes from non-zero to zero. + */ + if ((lp->mode == 1) && (val & (HP100_RX_PDA_ZERO))) + hp100_rxfill(dev); + + /* + * HP100_TX_COMPLETE interrupt occurs when packet transmitted on wire + * is completed + */ + if ((lp->mode == 1) && (val & (HP100_TX_COMPLETE))) + hp100_clean_txring(dev); + + /* + * MISC_ERROR is set when either the LAN link goes down or a detected + * bus error occurs. + */ + if (val & HP100_MISC_ERROR) { /* New for J2585B */ +#ifdef HP100_DEBUG_IRQ + printk + ("hp100: %s: Misc. Error Interrupt - Check cabling.\n", + dev->name); +#endif + if (lp->mode == 1) { + hp100_clean_txring(dev); + hp100_rxfill(dev); + } + hp100_misc_interrupt(dev); + } + + spin_unlock(&lp->lock); + hp100_ints_on(); + return IRQ_HANDLED; +} + +/* + * some misc functions + */ + +static void hp100_start_interface(struct net_device *dev) +{ + unsigned long flags; + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + +#ifdef HP100_DEBUG_B + hp100_outw(0x4220, TRACE); + printk("hp100: %s: hp100_start_interface\n", dev->name); +#endif + + spin_lock_irqsave(&lp->lock, flags); + + /* Ensure the adapter does not want to request an interrupt when */ + /* enabling the IRQ line to be active on the bus (i.e. not tri-stated) */ + hp100_page(PERFORMANCE); + hp100_outw(0xfefe, IRQ_MASK); /* mask off all ints */ + hp100_outw(0xffff, IRQ_STATUS); /* ack all IRQs */ + hp100_outw(HP100_FAKE_INT | HP100_INT_EN | HP100_RESET_LB, + OPTION_LSW); + /* Un Tri-state int. TODO: Check if shared interrupts can be realised? */ + hp100_outw(HP100_TRI_INT | HP100_RESET_HB, OPTION_LSW); + + if (lp->mode == 1) { + /* Make sure BM bit is set... */ + hp100_page(HW_MAP); + hp100_orb(HP100_BM_MASTER, BM); + hp100_rxfill(dev); + } else if (lp->mode == 2) { + /* Enable memory mapping. Note: Don't do this when busmaster. */ + hp100_outw(HP100_MMAP_DIS | HP100_RESET_HB, OPTION_LSW); + } + + hp100_page(PERFORMANCE); + hp100_outw(0xfefe, IRQ_MASK); /* mask off all ints */ + hp100_outw(0xffff, IRQ_STATUS); /* ack IRQ */ + + /* enable a few interrupts: */ + if (lp->mode == 1) { /* busmaster mode */ + hp100_outw(HP100_RX_PDL_FILL_COMPL | + HP100_RX_PDA_ZERO | HP100_RX_ERROR | + /* HP100_RX_PACKET | */ + /* HP100_RX_EARLY_INT | */ HP100_SET_HB | + /* HP100_TX_PDA_ZERO | */ + HP100_TX_COMPLETE | + /* HP100_MISC_ERROR | */ + HP100_TX_ERROR | HP100_SET_LB, IRQ_MASK); + } else { + hp100_outw(HP100_RX_PACKET | + HP100_RX_ERROR | HP100_SET_HB | + HP100_TX_ERROR | HP100_SET_LB, IRQ_MASK); + } + + /* Note : before hp100_set_multicast_list(), because it will play with + * spinlock itself... Jean II */ + spin_unlock_irqrestore(&lp->lock, flags); + + /* Enable MAC Tx and RX, set MAC modes, ... */ + hp100_set_multicast_list(dev); +} + +static void hp100_stop_interface(struct net_device *dev) +{ + struct hp100_private *lp = netdev_priv(dev); + int ioaddr = dev->base_addr; + u_int val; + +#ifdef HP100_DEBUG_B + printk("hp100: %s: hp100_stop_interface\n", dev->name); + hp100_outw(0x4221, TRACE); +#endif + + if (lp->mode == 1) + hp100_BM_shutdown(dev); + else { + /* Note: MMAP_DIS will be reenabled by start_interface */ + hp100_outw(HP100_INT_EN | HP100_RESET_LB | + HP100_TRI_INT | HP100_MMAP_DIS | HP100_SET_HB, + OPTION_LSW); + val = hp100_inw(OPTION_LSW); + + hp100_page(MAC_CTRL); + hp100_andb(~(HP100_RX_EN | HP100_TX_EN), MAC_CFG_1); + + if (!(val & HP100_HW_RST)) + return; /* If reset, imm. return ... */ + /* ... else: busy wait until idle */ + for (val = 0; val < 6000; val++) + if ((hp100_inb(MAC_CFG_1) & (HP100_TX_IDLE | HP100_RX_IDLE)) == (HP100_TX_IDLE | HP100_RX_IDLE)) { + hp100_page(PERFORMANCE); + return; + } + printk("hp100: %s: hp100_stop_interface - timeout\n", dev->name); + hp100_page(PERFORMANCE); + } +} + +static void hp100_load_eeprom(struct net_device *dev, u_short probe_ioaddr) +{ + int i; + int ioaddr = probe_ioaddr > 0 ? probe_ioaddr : dev->base_addr; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4222, TRACE); +#endif + + hp100_page(EEPROM_CTRL); + hp100_andw(~HP100_EEPROM_LOAD, EEPROM_CTRL); + hp100_orw(HP100_EEPROM_LOAD, EEPROM_CTRL); + for (i = 0; i < 10000; i++) + if (!(hp100_inb(OPTION_MSW) & HP100_EE_LOAD)) + return; + printk("hp100: %s: hp100_load_eeprom - timeout\n", dev->name); +} + +/* Sense connection status. + * return values: LAN_10 - Connected to 10Mbit/s network + * LAN_100 - Connected to 100Mbit/s network + * LAN_ERR - not connected or 100Mbit/s Hub down + */ +static int hp100_sense_lan(struct net_device *dev) +{ + int ioaddr = dev->base_addr; + u_short val_VG, val_10; + struct hp100_private *lp = netdev_priv(dev); + +#ifdef HP100_DEBUG_B + hp100_outw(0x4223, TRACE); +#endif + + hp100_page(MAC_CTRL); + val_10 = hp100_inb(10_LAN_CFG_1); + val_VG = hp100_inb(VG_LAN_CFG_1); + hp100_page(PERFORMANCE); +#ifdef HP100_DEBUG + printk("hp100: %s: sense_lan: val_VG = 0x%04x, val_10 = 0x%04x\n", + dev->name, val_VG, val_10); +#endif + + if (val_10 & HP100_LINK_BEAT_ST) /* 10Mb connection is active */ + return HP100_LAN_10; + + if (val_10 & HP100_AUI_ST) { /* have we BNC or AUI onboard? */ + /* + * This can be overriden by dos utility, so if this has no effect, + * perhaps you need to download that utility from HP and set card + * back to "auto detect". + */ + val_10 |= HP100_AUI_SEL | HP100_LOW_TH; + hp100_page(MAC_CTRL); + hp100_outb(val_10, 10_LAN_CFG_1); + hp100_page(PERFORMANCE); + return HP100_LAN_COAX; + } + + /* Those cards don't have a 100 Mbit connector */ + if ( !strcmp(lp->id, "HWP1920") || + (lp->pci_dev && + lp->pci_dev->vendor == PCI_VENDOR_ID && + (lp->pci_dev->device == PCI_DEVICE_ID_HP_J2970A || + lp->pci_dev->device == PCI_DEVICE_ID_HP_J2973A))) + return HP100_LAN_ERR; + + if (val_VG & HP100_LINK_CABLE_ST) /* Can hear the HUBs tone. */ + return HP100_LAN_100; + return HP100_LAN_ERR; +} + +static int hp100_down_vg_link(struct net_device *dev) +{ + struct hp100_private *lp = netdev_priv(dev); + int ioaddr = dev->base_addr; + unsigned long time; + long savelan, newlan; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4224, TRACE); + printk("hp100: %s: down_vg_link\n", dev->name); +#endif + + hp100_page(MAC_CTRL); + time = jiffies + (HZ / 4); + do { + if (hp100_inb(VG_LAN_CFG_1) & HP100_LINK_CABLE_ST) + break; + if (!in_interrupt()) + schedule_timeout_interruptible(1); + } while (time_after(time, jiffies)); + + if (time_after_eq(jiffies, time)) /* no signal->no logout */ + return 0; + + /* Drop the VG Link by clearing the link up cmd and load addr. */ + + hp100_andb(~(HP100_LOAD_ADDR | HP100_LINK_CMD), VG_LAN_CFG_1); + hp100_orb(HP100_VG_SEL, VG_LAN_CFG_1); + + /* Conditionally stall for >250ms on Link-Up Status (to go down) */ + time = jiffies + (HZ / 2); + do { + if (!(hp100_inb(VG_LAN_CFG_1) & HP100_LINK_UP_ST)) + break; + if (!in_interrupt()) + schedule_timeout_interruptible(1); + } while (time_after(time, jiffies)); + +#ifdef HP100_DEBUG + if (time_after_eq(jiffies, time)) + printk("hp100: %s: down_vg_link: Link does not go down?\n", dev->name); +#endif + + /* To prevent condition where Rev 1 VG MAC and old hubs do not complete */ + /* logout under traffic (even though all the status bits are cleared), */ + /* do this workaround to get the Rev 1 MAC in its idle state */ + if (lp->chip == HP100_CHIPID_LASSEN) { + /* Reset VG MAC to insure it leaves the logoff state even if */ + /* the Hub is still emitting tones */ + hp100_andb(~HP100_VG_RESET, VG_LAN_CFG_1); + udelay(1500); /* wait for >1ms */ + hp100_orb(HP100_VG_RESET, VG_LAN_CFG_1); /* Release Reset */ + udelay(1500); + } + + /* New: For lassen, switch to 10 Mbps mac briefly to clear training ACK */ + /* to get the VG mac to full reset. This is not req.d with later chips */ + /* Note: It will take the between 1 and 2 seconds for the VG mac to be */ + /* selected again! This will be left to the connect hub function to */ + /* perform if desired. */ + if (lp->chip == HP100_CHIPID_LASSEN) { + /* Have to write to 10 and 100VG control registers simultaneously */ + savelan = newlan = hp100_inl(10_LAN_CFG_1); /* read 10+100 LAN_CFG regs */ + newlan &= ~(HP100_VG_SEL << 16); + newlan |= (HP100_DOT3_MAC) << 8; + hp100_andb(~HP100_AUTO_MODE, MAC_CFG_3); /* Autosel off */ + hp100_outl(newlan, 10_LAN_CFG_1); + + /* Conditionally stall for 5sec on VG selected. */ + time = jiffies + (HZ * 5); + do { + if (!(hp100_inb(MAC_CFG_4) & HP100_MAC_SEL_ST)) + break; + if (!in_interrupt()) + schedule_timeout_interruptible(1); + } while (time_after(time, jiffies)); + + hp100_orb(HP100_AUTO_MODE, MAC_CFG_3); /* Autosel back on */ + hp100_outl(savelan, 10_LAN_CFG_1); + } + + time = jiffies + (3 * HZ); /* Timeout 3s */ + do { + if ((hp100_inb(VG_LAN_CFG_1) & HP100_LINK_CABLE_ST) == 0) + break; + if (!in_interrupt()) + schedule_timeout_interruptible(1); + } while (time_after(time, jiffies)); + + if (time_before_eq(time, jiffies)) { +#ifdef HP100_DEBUG + printk("hp100: %s: down_vg_link: timeout\n", dev->name); +#endif + return -EIO; + } + + time = jiffies + (2 * HZ); /* This seems to take a while.... */ + do { + if (!in_interrupt()) + schedule_timeout_interruptible(1); + } while (time_after(time, jiffies)); + + return 0; +} + +static int hp100_login_to_vg_hub(struct net_device *dev, u_short force_relogin) +{ + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + u_short val = 0; + unsigned long time; + int startst; + +#ifdef HP100_DEBUG_B + hp100_outw(0x4225, TRACE); + printk("hp100: %s: login_to_vg_hub\n", dev->name); +#endif + + /* Initiate a login sequence iff VG MAC is enabled and either Load Address + * bit is zero or the force relogin flag is set (e.g. due to MAC address or + * promiscuous mode change) + */ + hp100_page(MAC_CTRL); + startst = hp100_inb(VG_LAN_CFG_1); + if ((force_relogin == 1) || (hp100_inb(MAC_CFG_4) & HP100_MAC_SEL_ST)) { +#ifdef HP100_DEBUG_TRAINING + printk("hp100: %s: Start training\n", dev->name); +#endif + + /* Ensure VG Reset bit is 1 (i.e., do not reset) */ + hp100_orb(HP100_VG_RESET, VG_LAN_CFG_1); + + /* If Lassen AND auto-select-mode AND VG tones were sensed on */ + /* entry then temporarily put them into force 100Mbit mode */ + if ((lp->chip == HP100_CHIPID_LASSEN) && (startst & HP100_LINK_CABLE_ST)) + hp100_andb(~HP100_DOT3_MAC, 10_LAN_CFG_2); + + /* Drop the VG link by zeroing Link Up Command and Load Address */ + hp100_andb(~(HP100_LINK_CMD /* |HP100_LOAD_ADDR */ ), VG_LAN_CFG_1); + +#ifdef HP100_DEBUG_TRAINING + printk("hp100: %s: Bring down the link\n", dev->name); +#endif + + /* Wait for link to drop */ + time = jiffies + (HZ / 10); + do { + if (!(hp100_inb(VG_LAN_CFG_1) & HP100_LINK_UP_ST)) + break; + if (!in_interrupt()) + schedule_timeout_interruptible(1); + } while (time_after(time, jiffies)); + + /* Start an addressed training and optionally request promiscuous port */ + if ((dev->flags) & IFF_PROMISC) { + hp100_orb(HP100_PROM_MODE, VG_LAN_CFG_2); + if (lp->chip == HP100_CHIPID_LASSEN) + hp100_orw(HP100_MACRQ_PROMSC, TRAIN_REQUEST); + } else { + hp100_andb(~HP100_PROM_MODE, VG_LAN_CFG_2); + /* For ETR parts we need to reset the prom. bit in the training + * register, otherwise promiscious mode won't be disabled. + */ + if (lp->chip == HP100_CHIPID_LASSEN) { + hp100_andw(~HP100_MACRQ_PROMSC, TRAIN_REQUEST); + } + } + + /* With ETR parts, frame format request bits can be set. */ + if (lp->chip == HP100_CHIPID_LASSEN) + hp100_orb(HP100_MACRQ_FRAMEFMT_EITHER, TRAIN_REQUEST); + + hp100_orb(HP100_LINK_CMD | HP100_LOAD_ADDR | HP100_VG_RESET, VG_LAN_CFG_1); + + /* Note: Next wait could be omitted for Hood and earlier chips under */ + /* certain circumstances */ + /* TODO: check if hood/earlier and skip wait. */ + + /* Wait for either short timeout for VG tones or long for login */ + /* Wait for the card hardware to signalise link cable status ok... */ + hp100_page(MAC_CTRL); + time = jiffies + (1 * HZ); /* 1 sec timeout for cable st */ + do { + if (hp100_inb(VG_LAN_CFG_1) & HP100_LINK_CABLE_ST) + break; + if (!in_interrupt()) + schedule_timeout_interruptible(1); + } while (time_before(jiffies, time)); + + if (time_after_eq(jiffies, time)) { +#ifdef HP100_DEBUG_TRAINING + printk("hp100: %s: Link cable status not ok? Training aborted.\n", dev->name); +#endif + } else { +#ifdef HP100_DEBUG_TRAINING + printk + ("hp100: %s: HUB tones detected. Trying to train.\n", + dev->name); +#endif + + time = jiffies + (2 * HZ); /* again a timeout */ + do { + val = hp100_inb(VG_LAN_CFG_1); + if ((val & (HP100_LINK_UP_ST))) { +#ifdef HP100_DEBUG_TRAINING + printk("hp100: %s: Passed training.\n", dev->name); +#endif + break; + } + if (!in_interrupt()) + schedule_timeout_interruptible(1); + } while (time_after(time, jiffies)); + } + + /* If LINK_UP_ST is set, then we are logged into the hub. */ + if (time_before_eq(jiffies, time) && (val & HP100_LINK_UP_ST)) { +#ifdef HP100_DEBUG_TRAINING + printk("hp100: %s: Successfully logged into the HUB.\n", dev->name); + if (lp->chip == HP100_CHIPID_LASSEN) { + val = hp100_inw(TRAIN_ALLOW); + printk("hp100: %s: Card supports 100VG MAC Version \"%s\" ", + dev->name, (hp100_inw(TRAIN_REQUEST) & HP100_CARD_MACVER) ? "802.12" : "Pre"); + printk("Driver will use MAC Version \"%s\"\n", (val & HP100_HUB_MACVER) ? "802.12" : "Pre"); + printk("hp100: %s: Frame format is %s.\n", dev->name, (val & HP100_MALLOW_FRAMEFMT) ? "802.5" : "802.3"); + } +#endif + } else { + /* If LINK_UP_ST is not set, login was not successful */ + printk("hp100: %s: Problem logging into the HUB.\n", dev->name); + if (lp->chip == HP100_CHIPID_LASSEN) { + /* Check allowed Register to find out why there is a problem. */ + val = hp100_inw(TRAIN_ALLOW); /* won't work on non-ETR card */ +#ifdef HP100_DEBUG_TRAINING + printk("hp100: %s: MAC Configuration requested: 0x%04x, HUB allowed: 0x%04x\n", dev->name, hp100_inw(TRAIN_REQUEST), val); +#endif + if (val & HP100_MALLOW_ACCDENIED) + printk("hp100: %s: HUB access denied.\n", dev->name); + if (val & HP100_MALLOW_CONFIGURE) + printk("hp100: %s: MAC Configuration is incompatible with the Network.\n", dev->name); + if (val & HP100_MALLOW_DUPADDR) + printk("hp100: %s: Duplicate MAC Address on the Network.\n", dev->name); + } + } + + /* If we have put the chip into forced 100 Mbit mode earlier, go back */ + /* to auto-select mode */ + + if ((lp->chip == HP100_CHIPID_LASSEN) && (startst & HP100_LINK_CABLE_ST)) { + hp100_page(MAC_CTRL); + hp100_orb(HP100_DOT3_MAC, 10_LAN_CFG_2); + } + + val = hp100_inb(VG_LAN_CFG_1); + + /* Clear the MISC_ERROR Interrupt, which might be generated when doing the relogin */ + hp100_page(PERFORMANCE); + hp100_outw(HP100_MISC_ERROR, IRQ_STATUS); + + if (val & HP100_LINK_UP_ST) + return 0; /* login was ok */ + else { + printk("hp100: %s: Training failed.\n", dev->name); + hp100_down_vg_link(dev); + return -EIO; + } + } + /* no forced relogin & already link there->no training. */ + return -EIO; +} + +static void hp100_cascade_reset(struct net_device *dev, u_short enable) +{ + int ioaddr = dev->base_addr; + struct hp100_private *lp = netdev_priv(dev); + +#ifdef HP100_DEBUG_B + hp100_outw(0x4226, TRACE); + printk("hp100: %s: cascade_reset\n", dev->name); +#endif + + if (enable) { + hp100_outw(HP100_HW_RST | HP100_RESET_LB, OPTION_LSW); + if (lp->chip == HP100_CHIPID_LASSEN) { + /* Lassen requires a PCI transmit fifo reset */ + hp100_page(HW_MAP); + hp100_andb(~HP100_PCI_RESET, PCICTRL2); + hp100_orb(HP100_PCI_RESET, PCICTRL2); + /* Wait for min. 300 ns */ + /* we can't use jiffies here, because it may be */ + /* that we have disabled the timer... */ + udelay(400); + hp100_andb(~HP100_PCI_RESET, PCICTRL2); + hp100_page(PERFORMANCE); + } + } else { /* bring out of reset */ + hp100_outw(HP100_HW_RST | HP100_SET_LB, OPTION_LSW); + udelay(400); + hp100_page(PERFORMANCE); + } +} + +#ifdef HP100_DEBUG +void hp100_RegisterDump(struct net_device *dev) +{ + int ioaddr = dev->base_addr; + int Page; + int Register; + + /* Dump common registers */ + printk("hp100: %s: Cascade Register Dump\n", dev->name); + printk("hardware id #1: 0x%.2x\n", hp100_inb(HW_ID)); + printk("hardware id #2/paging: 0x%.2x\n", hp100_inb(PAGING)); + printk("option #1: 0x%.4x\n", hp100_inw(OPTION_LSW)); + printk("option #2: 0x%.4x\n", hp100_inw(OPTION_MSW)); + + /* Dump paged registers */ + for (Page = 0; Page < 8; Page++) { + /* Dump registers */ + printk("page: 0x%.2x\n", Page); + outw(Page, ioaddr + 0x02); + for (Register = 0x8; Register < 0x22; Register += 2) { + /* Display Register contents except data port */ + if (((Register != 0x10) && (Register != 0x12)) || (Page > 0)) { + printk("0x%.2x = 0x%.4x\n", Register, inw(ioaddr + Register)); + } + } + } + hp100_page(PERFORMANCE); +} +#endif + + +static void cleanup_dev(struct net_device *d) +{ + struct hp100_private *p = netdev_priv(d); + + unregister_netdev(d); + release_region(d->base_addr, HP100_REGION_SIZE); + + if (p->mode == 1) /* busmaster */ + pci_free_consistent(p->pci_dev, MAX_RINGSIZE + 0x0f, + p->page_vaddr_algn, + virt_to_whatever(d, p->page_vaddr_algn)); + if (p->mem_ptr_virt) + iounmap(p->mem_ptr_virt); + + free_netdev(d); +} + +static int hp100_eisa_probe(struct device *gendev) +{ + struct net_device *dev = alloc_etherdev(sizeof(struct hp100_private)); + struct eisa_device *edev = to_eisa_device(gendev); + int err; + + if (!dev) + return -ENOMEM; + + SET_NETDEV_DEV(dev, &edev->dev); + + err = hp100_probe1(dev, edev->base_addr + 0xC38, HP100_BUS_EISA, NULL); + if (err) + goto out1; + +#ifdef HP100_DEBUG + printk("hp100: %s: EISA adapter found at 0x%x\n", dev->name, + dev->base_addr); +#endif + dev_set_drvdata(gendev, dev); + return 0; + out1: + free_netdev(dev); + return err; +} + +static int hp100_eisa_remove(struct device *gendev) +{ + struct net_device *dev = dev_get_drvdata(gendev); + cleanup_dev(dev); + return 0; +} + +static struct eisa_driver hp100_eisa_driver = { + .id_table = hp100_eisa_tbl, + .driver = { + .name = "hp100", + .probe = hp100_eisa_probe, + .remove = hp100_eisa_remove, + } +}; + +static int hp100_pci_probe(struct pci_dev *pdev, + const struct pci_device_id *ent) +{ + struct net_device *dev; + int ioaddr; + u_short pci_command; + int err; + + if (pci_enable_device(pdev)) + return -ENODEV; + + dev = alloc_etherdev(sizeof(struct hp100_private)); + if (!dev) { + err = -ENOMEM; + goto out0; + } + + SET_NETDEV_DEV(dev, &pdev->dev); + + pci_read_config_word(pdev, PCI_COMMAND, &pci_command); + if (!(pci_command & PCI_COMMAND_IO)) { +#ifdef HP100_DEBUG + printk("hp100: %s: PCI I/O Bit has not been set. Setting...\n", dev->name); +#endif + pci_command |= PCI_COMMAND_IO; + pci_write_config_word(pdev, PCI_COMMAND, pci_command); + } + + if (!(pci_command & PCI_COMMAND_MASTER)) { +#ifdef HP100_DEBUG + printk("hp100: %s: PCI Master Bit has not been set. Setting...\n", dev->name); +#endif + pci_command |= PCI_COMMAND_MASTER; + pci_write_config_word(pdev, PCI_COMMAND, pci_command); + } + + ioaddr = pci_resource_start(pdev, 0); + err = hp100_probe1(dev, ioaddr, HP100_BUS_PCI, pdev); + if (err) + goto out1; + +#ifdef HP100_DEBUG + printk("hp100: %s: PCI adapter found at 0x%x\n", dev->name, ioaddr); +#endif + pci_set_drvdata(pdev, dev); + return 0; + out1: + free_netdev(dev); + out0: + pci_disable_device(pdev); + return err; +} + +static void hp100_pci_remove(struct pci_dev *pdev) +{ + struct net_device *dev = pci_get_drvdata(pdev); + + cleanup_dev(dev); + pci_disable_device(pdev); +} + + +static struct pci_driver hp100_pci_driver = { + .name = "hp100", + .id_table = hp100_pci_tbl, + .probe = hp100_pci_probe, + .remove = hp100_pci_remove, +}; + +/* + * module section + */ + +MODULE_LICENSE("GPL"); +MODULE_AUTHOR("Jaroslav Kysela <perex@perex.cz>, " + "Siegfried \"Frieder\" Loeffler (dg1sek) <floeff@mathematik.uni-stuttgart.de>"); +MODULE_DESCRIPTION("HP CASCADE Architecture Driver for 100VG-AnyLan Network Adapters"); + +/* + * Note: to register three isa devices, use: + * option hp100 hp100_port=0,0,0 + * to register one card at io 0x280 as eth239, use: + * option hp100 hp100_port=0x280 + */ +#if defined(MODULE) && defined(CONFIG_ISA) +#define HP100_DEVICES 5 +/* Parameters set by insmod */ +static int hp100_port[HP100_DEVICES] = { 0, [1 ... (HP100_DEVICES-1)] = -1 }; +module_param_hw_array(hp100_port, int, ioport, NULL, 0); + +/* List of devices */ +static struct net_device *hp100_devlist[HP100_DEVICES]; + +static int __init hp100_isa_init(void) +{ + struct net_device *dev; + int i, err, cards = 0; + + /* Don't autoprobe ISA bus */ + if (hp100_port[0] == 0) + return -ENODEV; + + /* Loop on all possible base addresses */ + for (i = 0; i < HP100_DEVICES && hp100_port[i] != -1; ++i) { + dev = alloc_etherdev(sizeof(struct hp100_private)); + if (!dev) { + while (cards > 0) + cleanup_dev(hp100_devlist[--cards]); + + return -ENOMEM; + } + + err = hp100_isa_probe(dev, hp100_port[i]); + if (!err) + hp100_devlist[cards++] = dev; + else + free_netdev(dev); + } + + return cards > 0 ? 0 : -ENODEV; +} + +static void hp100_isa_cleanup(void) +{ + int i; + + for (i = 0; i < HP100_DEVICES; i++) { + struct net_device *dev = hp100_devlist[i]; + if (dev) + cleanup_dev(dev); + } +} +#else +#define hp100_isa_init() (0) +#define hp100_isa_cleanup() do { } while(0) +#endif + +static int __init hp100_module_init(void) +{ + int err; + + err = hp100_isa_init(); + if (err && err != -ENODEV) + goto out; + err = eisa_driver_register(&hp100_eisa_driver); + if (err && err != -ENODEV) + goto out2; + err = pci_register_driver(&hp100_pci_driver); + if (err && err != -ENODEV) + goto out3; + out: + return err; + out3: + eisa_driver_unregister (&hp100_eisa_driver); + out2: + hp100_isa_cleanup(); + goto out; +} + + +static void __exit hp100_module_exit(void) +{ + hp100_isa_cleanup(); + eisa_driver_unregister (&hp100_eisa_driver); + pci_unregister_driver (&hp100_pci_driver); +} + +module_init(hp100_module_init) +module_exit(hp100_module_exit) diff --git a/drivers/staging/hp/hp100.h b/drivers/staging/hp/hp100.h new file mode 100644 index 000000000000..7239b94c9de5 --- /dev/null +++ b/drivers/staging/hp/hp100.h @@ -0,0 +1,611 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* + * hp100.h: Hewlett Packard HP10/100VG ANY LAN ethernet driver for Linux. + * + * $Id: hp100.h,v 1.51 1997/04/08 14:26:42 floeff Exp floeff $ + * + * Authors: Jaroslav Kysela, <perex@pf.jcu.cz> + * Siegfried Loeffler <floeff@tunix.mathematik.uni-stuttgart.de> + * + * This driver is based on the 'hpfepkt' crynwr packet driver. + */ + +/**************************************************************************** + * Hardware Constants + ****************************************************************************/ + +/* + * Page Identifiers + * (Swap Paging Register, PAGING, bits 3:0, Offset 0x02) + */ + +#define HP100_PAGE_PERFORMANCE 0x0 /* Page 0 */ +#define HP100_PAGE_MAC_ADDRESS 0x1 /* Page 1 */ +#define HP100_PAGE_HW_MAP 0x2 /* Page 2 */ +#define HP100_PAGE_EEPROM_CTRL 0x3 /* Page 3 */ +#define HP100_PAGE_MAC_CTRL 0x4 /* Page 4 */ +#define HP100_PAGE_MMU_CFG 0x5 /* Page 5 */ +#define HP100_PAGE_ID_MAC_ADDR 0x6 /* Page 6 */ +#define HP100_PAGE_MMU_POINTER 0x7 /* Page 7 */ + + +/* Registers that are present on all pages */ + +#define HP100_REG_HW_ID 0x00 /* R: (16) Unique card ID */ +#define HP100_REG_TRACE 0x00 /* W: (16) Used for debug output */ +#define HP100_REG_PAGING 0x02 /* R: (16),15:4 Card ID */ + /* W: (16),3:0 Switch pages */ +#define HP100_REG_OPTION_LSW 0x04 /* RW: (16) Select card functions */ +#define HP100_REG_OPTION_MSW 0x06 /* RW: (16) Select card functions */ + +/* Page 0 - Performance */ + +#define HP100_REG_IRQ_STATUS 0x08 /* RW: (16) Which ints are pending */ +#define HP100_REG_IRQ_MASK 0x0a /* RW: (16) Select ints to allow */ +#define HP100_REG_FRAGMENT_LEN 0x0c /* W: (16)12:0 Current fragment len */ +/* Note: For 32 bit systems, fragment len and offset registers are available */ +/* at offset 0x28 and 0x2c, where they can be written as 32bit values. */ +#define HP100_REG_OFFSET 0x0e /* RW: (16)12:0 Offset to start read */ +#define HP100_REG_DATA32 0x10 /* RW: (32) I/O mode data port */ +#define HP100_REG_DATA16 0x12 /* RW: WORDs must be read from here */ +#define HP100_REG_TX_MEM_FREE 0x14 /* RD: (32) Amount of free Tx mem */ +#define HP100_REG_TX_PDA_L 0x14 /* W: (32) BM: Ptr to PDL, Low Pri */ +#define HP100_REG_TX_PDA_H 0x1c /* W: (32) BM: Ptr to PDL, High Pri */ +#define HP100_REG_RX_PKT_CNT 0x18 /* RD: (8) Rx count of pkts on card */ +#define HP100_REG_TX_PKT_CNT 0x19 /* RD: (8) Tx count of pkts on card */ +#define HP100_REG_RX_PDL 0x1a /* R: (8) BM: # rx pdl not executed */ +#define HP100_REG_TX_PDL 0x1b /* R: (8) BM: # tx pdl not executed */ +#define HP100_REG_RX_PDA 0x18 /* W: (32) BM: Up to 31 addresses */ + /* which point to a PDL */ +#define HP100_REG_SL_EARLY 0x1c /* (32) Enhanced Slave Early Rx */ +#define HP100_REG_STAT_DROPPED 0x20 /* R (12) Dropped Packet Counter */ +#define HP100_REG_STAT_ERRORED 0x22 /* R (8) Errored Packet Counter */ +#define HP100_REG_STAT_ABORT 0x23 /* R (8) Abort Counter/OW Coll. Flag */ +#define HP100_REG_RX_RING 0x24 /* W (32) Slave: RX Ring Pointers */ +#define HP100_REG_32_FRAGMENT_LEN 0x28 /* W (13) Slave: Fragment Length Reg */ +#define HP100_REG_32_OFFSET 0x2c /* W (16) Slave: Offset Register */ + +/* Page 1 - MAC Address/Hash Table */ + +#define HP100_REG_MAC_ADDR 0x08 /* RW: (8) Cards MAC address */ +#define HP100_REG_HASH_BYTE0 0x10 /* RW: (8) Cards multicast filter */ + +/* Page 2 - Hardware Mapping */ + +#define HP100_REG_MEM_MAP_LSW 0x08 /* RW: (16) LSW of cards mem addr */ +#define HP100_REG_MEM_MAP_MSW 0x0a /* RW: (16) MSW of cards mem addr */ +#define HP100_REG_IO_MAP 0x0c /* RW: (8) Cards I/O address */ +#define HP100_REG_IRQ_CHANNEL 0x0d /* RW: (8) IRQ and edge/level int */ +#define HP100_REG_SRAM 0x0e /* RW: (8) How much RAM on card */ +#define HP100_REG_BM 0x0f /* RW: (8) Controls BM functions */ + +/* New on Page 2 for ETR chips: */ +#define HP100_REG_MODECTRL1 0x10 /* RW: (8) Mode Control 1 */ +#define HP100_REG_MODECTRL2 0x11 /* RW: (8) Mode Control 2 */ +#define HP100_REG_PCICTRL1 0x12 /* RW: (8) PCI Cfg 1 */ +#define HP100_REG_PCICTRL2 0x13 /* RW: (8) PCI Cfg 2 */ +#define HP100_REG_PCIBUSMLAT 0x15 /* RW: (8) PCI Bus Master Latency */ +#define HP100_REG_EARLYTXCFG 0x16 /* RW: (16) Early TX Cfg/Cntrl Reg */ +#define HP100_REG_EARLYRXCFG 0x18 /* RW: (8) Early RX Cfg/Cntrl Reg */ +#define HP100_REG_ISAPNPCFG1 0x1a /* RW: (8) ISA PnP Cfg/Cntrl Reg 1 */ +#define HP100_REG_ISAPNPCFG2 0x1b /* RW: (8) ISA PnP Cfg/Cntrl Reg 2 */ + +/* Page 3 - EEPROM/Boot ROM */ + +#define HP100_REG_EEPROM_CTRL 0x08 /* RW: (16) Used to load EEPROM */ +#define HP100_REG_BOOTROM_CTRL 0x0a + +/* Page 4 - LAN Configuration (MAC_CTRL) */ + +#define HP100_REG_10_LAN_CFG_1 0x08 /* RW: (8) Set 10M XCVR functions */ +#define HP100_REG_10_LAN_CFG_2 0x09 /* RW: (8) 10M XCVR functions */ +#define HP100_REG_VG_LAN_CFG_1 0x0a /* RW: (8) Set 100M XCVR functions */ +#define HP100_REG_VG_LAN_CFG_2 0x0b /* RW: (8) 100M LAN Training cfgregs */ +#define HP100_REG_MAC_CFG_1 0x0c /* RW: (8) Types of pkts to accept */ +#define HP100_REG_MAC_CFG_2 0x0d /* RW: (8) Misc MAC functions */ +#define HP100_REG_MAC_CFG_3 0x0e /* RW: (8) Misc MAC functions */ +#define HP100_REG_MAC_CFG_4 0x0f /* R: (8) Misc MAC states */ +#define HP100_REG_DROPPED 0x10 /* R: (16),11:0 Pkts can't fit in mem */ +#define HP100_REG_CRC 0x12 /* R: (8) Pkts with CRC */ +#define HP100_REG_ABORT 0x13 /* R: (8) Aborted Tx pkts */ +#define HP100_REG_TRAIN_REQUEST 0x14 /* RW: (16) Endnode MAC register. */ +#define HP100_REG_TRAIN_ALLOW 0x16 /* R: (16) Hub allowed register */ + +/* Page 5 - MMU */ + +#define HP100_REG_RX_MEM_STOP 0x0c /* RW: (16) End of Rx ring addr */ +#define HP100_REG_TX_MEM_STOP 0x0e /* RW: (16) End of Tx ring addr */ +#define HP100_REG_PDL_MEM_STOP 0x10 /* Not used by 802.12 devices */ +#define HP100_REG_ECB_MEM_STOP 0x14 /* I've no idea what this is */ + +/* Page 6 - Card ID/Physical LAN Address */ + +#define HP100_REG_BOARD_ID 0x08 /* R: (8) EISA/ISA card ID */ +#define HP100_REG_BOARD_IO_CHCK 0x0c /* R: (8) Added to ID to get FFh */ +#define HP100_REG_SOFT_MODEL 0x0d /* R: (8) Config program defined */ +#define HP100_REG_LAN_ADDR 0x10 /* R: (8) MAC addr of card */ +#define HP100_REG_LAN_ADDR_CHCK 0x16 /* R: (8) Added to addr to get FFh */ + +/* Page 7 - MMU Current Pointers */ + +#define HP100_REG_PTR_RXSTART 0x08 /* R: (16) Current begin of Rx ring */ +#define HP100_REG_PTR_RXEND 0x0a /* R: (16) Current end of Rx ring */ +#define HP100_REG_PTR_TXSTART 0x0c /* R: (16) Current begin of Tx ring */ +#define HP100_REG_PTR_TXEND 0x0e /* R: (16) Current end of Rx ring */ +#define HP100_REG_PTR_RPDLSTART 0x10 +#define HP100_REG_PTR_RPDLEND 0x12 +#define HP100_REG_PTR_RINGPTRS 0x14 +#define HP100_REG_PTR_MEMDEBUG 0x1a +/* ------------------------------------------------------------------------ */ + + +/* + * Hardware ID Register I (Always available, HW_ID, Offset 0x00) + */ +#define HP100_HW_ID_CASCADE 0x4850 /* Identifies Cascade Chip */ + +/* + * Hardware ID Register 2 & Paging Register + * (Always available, PAGING, Offset 0x02) + * Bits 15:4 are for the Chip ID + */ +#define HP100_CHIPID_MASK 0xFFF0 +#define HP100_CHIPID_SHASTA 0x5350 /* Not 802.12 compliant */ + /* EISA BM/SL, MCA16/32 SL, ISA SL */ +#define HP100_CHIPID_RAINIER 0x5360 /* Not 802.12 compliant EISA BM, */ + /* PCI SL, MCA16/32 SL, ISA SL */ +#define HP100_CHIPID_LASSEN 0x5370 /* 802.12 compliant PCI BM, PCI SL */ + /* LRF supported */ + +/* + * Option Registers I and II + * (Always available, OPTION_LSW, Offset 0x04-0x05) + */ +#define HP100_DEBUG_EN 0x8000 /* 0:Dis., 1:Enable Debug Dump Ptr. */ +#define HP100_RX_HDR 0x4000 /* 0:Dis., 1:Enable putting pkt into */ + /* system mem. before Rx interrupt */ +#define HP100_MMAP_DIS 0x2000 /* 0:Enable, 1:Disable mem.mapping. */ + /* MMAP_DIS must be 0 and MEM_EN */ + /* must be 1 for memory-mapped */ + /* mode to be enabled */ +#define HP100_EE_EN 0x1000 /* 0:Disable,1:Enable EEPROM writing */ +#define HP100_BM_WRITE 0x0800 /* 0:Slave, 1:Bus Master for Tx data */ +#define HP100_BM_READ 0x0400 /* 0:Slave, 1:Bus Master for Rx data */ +#define HP100_TRI_INT 0x0200 /* 0:Don't, 1:Do tri-state the int */ +#define HP100_MEM_EN 0x0040 /* Config program set this to */ + /* 0:Disable, 1:Enable mem map. */ + /* See MMAP_DIS. */ +#define HP100_IO_EN 0x0020 /* 1:Enable I/O transfers */ +#define HP100_BOOT_EN 0x0010 /* 1:Enable boot ROM access */ +#define HP100_FAKE_INT 0x0008 /* 1:int */ +#define HP100_INT_EN 0x0004 /* 1:Enable ints from card */ +#define HP100_HW_RST 0x0002 /* 0:Reset, 1:Out of reset */ + /* NIC reset on 0 to 1 transition */ + +/* + * Option Register III + * (Always available, OPTION_MSW, Offset 0x06) + */ +#define HP100_PRIORITY_TX 0x0080 /* 1:Do all Tx pkts as priority */ +#define HP100_EE_LOAD 0x0040 /* 1:EEPROM loading, 0 when done */ +#define HP100_ADV_NXT_PKT 0x0004 /* 1:Advance to next pkt in Rx queue */ + /* h/w will set to 0 when done */ +#define HP100_TX_CMD 0x0002 /* 1:Tell h/w download done, h/w */ + /* will set to 0 when done */ + +/* + * Interrupt Status Registers I and II + * (Page PERFORMANCE, IRQ_STATUS, Offset 0x08-0x09) + * Note: With old chips, these Registers will clear when 1 is written to them + * with new chips this depends on setting of CLR_ISMODE + */ +#define HP100_RX_EARLY_INT 0x2000 +#define HP100_RX_PDA_ZERO 0x1000 +#define HP100_RX_PDL_FILL_COMPL 0x0800 +#define HP100_RX_PACKET 0x0400 /* 0:No, 1:Yes pkt has been Rx */ +#define HP100_RX_ERROR 0x0200 /* 0:No, 1:Yes Rx pkt had error */ +#define HP100_TX_PDA_ZERO 0x0020 /* 1 when PDA count goes to zero */ +#define HP100_TX_SPACE_AVAIL 0x0010 /* 0:<8192, 1:>=8192 Tx free bytes */ +#define HP100_TX_COMPLETE 0x0008 /* 0:No, 1:Yes a Tx has completed */ +#define HP100_MISC_ERROR 0x0004 /* 0:No, 1:Lan Link down or bus error */ +#define HP100_TX_ERROR 0x0002 /* 0:No, 1:Yes Tx pkt had error */ + +/* + * Xmit Memory Free Count + * (Page PERFORMANCE, TX_MEM_FREE, Offset 0x14) (Read only, 32bit) + */ +#define HP100_AUTO_COMPARE 0x80000000 /* Tx Space avail & pkts<255 */ +#define HP100_FREE_SPACE 0x7fffffe0 /* Tx free memory */ + +/* + * IRQ Channel + * (Page HW_MAP, IRQ_CHANNEL, Offset 0x0d) + */ +#define HP100_ZERO_WAIT_EN 0x80 /* 0:No, 1:Yes asserts NOWS signal */ +#define HP100_IRQ_SCRAMBLE 0x40 +#define HP100_BOND_HP 0x20 +#define HP100_LEVEL_IRQ 0x10 /* 0:Edge, 1:Level type interrupts. */ + /* (Only valid on EISA cards) */ +#define HP100_IRQMASK 0x0F /* Isolate the IRQ bits */ + +/* + * SRAM Parameters + * (Page HW_MAP, SRAM, Offset 0x0e) + */ +#define HP100_RAM_SIZE_MASK 0xe0 /* AND to get SRAM size index */ +#define HP100_RAM_SIZE_SHIFT 0x05 /* Shift count(put index in lwr bits) */ + +/* + * Bus Master Register + * (Page HW_MAP, BM, Offset 0x0f) + */ +#define HP100_BM_BURST_RD 0x01 /* EISA only: 1=Use burst trans. fm system */ + /* memory to chip (tx) */ +#define HP100_BM_BURST_WR 0x02 /* EISA only: 1=Use burst trans. fm system */ + /* memory to chip (rx) */ +#define HP100_BM_MASTER 0x04 /* 0:Slave, 1:BM mode */ +#define HP100_BM_PAGE_CK 0x08 /* This bit should be set whenever in */ + /* an EISA system */ +#define HP100_BM_PCI_8CLK 0x40 /* ... cycles 8 clocks apart */ + + +/* + * Mode Control Register I + * (Page HW_MAP, MODECTRL1, Offset0x10) + */ +#define HP100_TX_DUALQ 0x10 + /* If set and BM -> dual tx pda queues */ +#define HP100_ISR_CLRMODE 0x02 /* If set ISR will clear all pending */ + /* interrupts on read (etr only?) */ +#define HP100_EE_NOLOAD 0x04 /* Status whether res will be loaded */ + /* from the eeprom */ +#define HP100_TX_CNT_FLG 0x08 /* Controls Early TX Reg Cnt Field */ +#define HP100_PDL_USE3 0x10 /* If set BM engine will read only */ + /* first three data elements of a PDL */ + /* on the first access. */ +#define HP100_BUSTYPE_MASK 0xe0 /* Three bit bus type info */ + +/* + * Mode Control Register II + * (Page HW_MAP, MODECTRL2, Offset0x11) + */ +#define HP100_EE_MASK 0x0f /* Tell EEPROM circuit not to load */ + /* certain resources */ +#define HP100_DIS_CANCEL 0x20 /* For tx dualq mode operation */ +#define HP100_EN_PDL_WB 0x40 /* 1: Status of PDL completion may be */ + /* written back to system mem */ +#define HP100_EN_BUS_FAIL 0x80 /* Enables bus-fail portion of misc */ + /* interrupt */ + +/* + * PCI Configuration and Control Register I + * (Page HW_MAP, PCICTRL1, Offset 0x12) + */ +#define HP100_LO_MEM 0x01 /* 1: Mapped Mem requested below 1MB */ +#define HP100_NO_MEM 0x02 /* 1: Disables Req for sysmem to PCI */ + /* bios */ +#define HP100_USE_ISA 0x04 /* 1: isa type decodes will occur */ + /* simultaneously with PCI decodes */ +#define HP100_IRQ_HI_MASK 0xf0 /* pgmed by pci bios */ +#define HP100_PCI_IRQ_HI_MASK 0x78 /* Isolate 4 bits for PCI IRQ */ + +/* + * PCI Configuration and Control Register II + * (Page HW_MAP, PCICTRL2, Offset 0x13) + */ +#define HP100_RD_LINE_PDL 0x01 /* 1: PCI command Memory Read Line en */ +#define HP100_RD_TX_DATA_MASK 0x06 /* choose PCI memread cmds for TX */ +#define HP100_MWI 0x08 /* 1: en. PCI memory write invalidate */ +#define HP100_ARB_MODE 0x10 /* Select PCI arbitor type */ +#define HP100_STOP_EN 0x20 /* Enables PCI state machine to issue */ + /* pci stop if cascade not ready */ +#define HP100_IGNORE_PAR 0x40 /* 1: PCI state machine ignores parity */ +#define HP100_PCI_RESET 0x80 /* 0->1: Reset PCI block */ + +/* + * Early TX Configuration and Control Register + * (Page HW_MAP, EARLYTXCFG, Offset 0x16) + */ +#define HP100_EN_EARLY_TX 0x8000 /* 1=Enable Early TX */ +#define HP100_EN_ADAPTIVE 0x4000 /* 1=Enable adaptive mode */ +#define HP100_EN_TX_UR_IRQ 0x2000 /* reserved, must be 0 */ +#define HP100_EN_LOW_TX 0x1000 /* reserved, must be 0 */ +#define HP100_ET_CNT_MASK 0x0fff /* bits 11..0: ET counters */ + +/* + * Early RX Configuration and Control Register + * (Page HW_MAP, EARLYRXCFG, Offset 0x18) + */ +#define HP100_EN_EARLY_RX 0x80 /* 1=Enable Early RX */ +#define HP100_EN_LOW_RX 0x40 /* reserved, must be 0 */ +#define HP100_RX_TRIP_MASK 0x1f /* bits 4..0: threshold at which the + * early rx circuit will start the + * dma of received packet into system + * memory for BM */ + +/* + * Serial Devices Control Register + * (Page EEPROM_CTRL, EEPROM_CTRL, Offset 0x08) + */ +#define HP100_EEPROM_LOAD 0x0001 /* 0->1 loads EEPROM into registers. */ + /* When it goes back to 0, load is */ + /* complete. This should take ~600us. */ + +/* + * 10MB LAN Control and Configuration Register I + * (Page MAC_CTRL, 10_LAN_CFG_1, Offset 0x08) + */ +#define HP100_MAC10_SEL 0xc0 /* Get bits to indicate MAC */ +#define HP100_AUI_SEL 0x20 /* Status of AUI selection */ +#define HP100_LOW_TH 0x10 /* 0:No, 1:Yes allow better cabling */ +#define HP100_LINK_BEAT_DIS 0x08 /* 0:Enable, 1:Disable link beat */ +#define HP100_LINK_BEAT_ST 0x04 /* 0:No, 1:Yes link beat being Rx */ +#define HP100_R_ROL_ST 0x02 /* 0:No, 1:Yes Rx twisted pair has */ + /* been reversed */ +#define HP100_AUI_ST 0x01 /* 0:No, 1:Yes use AUI on TP card */ + +/* + * 10 MB LAN Control and Configuration Register II + * (Page MAC_CTRL, 10_LAN_CFG_2, Offset 0x09) + */ +#define HP100_SQU_ST 0x01 /* 0:No, 1:Yes collision signal sent */ + /* after Tx.Only used for AUI. */ +#define HP100_FULLDUP 0x02 /* 1: LXT901 XCVR fullduplx enabled */ +#define HP100_DOT3_MAC 0x04 /* 1: DOT 3 Mac sel. unless Autosel */ + +/* + * MAC Selection, use with MAC10_SEL bits + */ +#define HP100_AUTO_SEL_10 0x0 /* Auto select */ +#define HP100_XCVR_LXT901_10 0x1 /* LXT901 10BaseT transceiver */ +#define HP100_XCVR_7213 0x2 /* 7213 transceiver */ +#define HP100_XCVR_82503 0x3 /* 82503 transceiver */ + +/* + * 100MB LAN Training Register + * (Page MAC_CTRL, VG_LAN_CFG_2, Offset 0x0b) (old, pre 802.12) + */ +#define HP100_FRAME_FORMAT 0x08 /* 0:802.3, 1:802.5 frames */ +#define HP100_BRIDGE 0x04 /* 0:No, 1:Yes tell hub i am a bridge */ +#define HP100_PROM_MODE 0x02 /* 0:No, 1:Yes tell hub card is */ + /* promiscuous */ +#define HP100_REPEATER 0x01 /* 0:No, 1:Yes tell hub MAC wants to */ + /* be a cascaded repeater */ + +/* + * 100MB LAN Control and Configuration Register + * (Page MAC_CTRL, VG_LAN_CFG_1, Offset 0x0a) + */ +#define HP100_VG_SEL 0x80 /* 0:No, 1:Yes use 100 Mbit MAC */ +#define HP100_LINK_UP_ST 0x40 /* 0:No, 1:Yes endnode logged in */ +#define HP100_LINK_CABLE_ST 0x20 /* 0:No, 1:Yes cable can hear tones */ + /* from hub */ +#define HP100_LOAD_ADDR 0x10 /* 0->1 card addr will be sent */ + /* 100ms later the link status */ + /* bits are valid */ +#define HP100_LINK_CMD 0x08 /* 0->1 link will attempt to log in. */ + /* 100ms later the link status */ + /* bits are valid */ +#define HP100_TRN_DONE 0x04 /* NEW ETR-Chips only: Will be reset */ + /* after LinkUp Cmd is given and set */ + /* when training has completed. */ +#define HP100_LINK_GOOD_ST 0x02 /* 0:No, 1:Yes cable passed training */ +#define HP100_VG_RESET 0x01 /* 0:Yes, 1:No reset the 100VG MAC */ + + +/* + * MAC Configuration Register I + * (Page MAC_CTRL, MAC_CFG_1, Offset 0x0c) + */ +#define HP100_RX_IDLE 0x80 /* 0:Yes, 1:No currently receiving pkts */ +#define HP100_TX_IDLE 0x40 /* 0:Yes, 1:No currently Txing pkts */ +#define HP100_RX_EN 0x20 /* 1: allow receiving of pkts */ +#define HP100_TX_EN 0x10 /* 1: allow transmitting of pkts */ +#define HP100_ACC_ERRORED 0x08 /* 0:No, 1:Yes allow Rx of errored pkts */ +#define HP100_ACC_MC 0x04 /* 0:No, 1:Yes allow Rx of multicast pkts */ +#define HP100_ACC_BC 0x02 /* 0:No, 1:Yes allow Rx of broadcast pkts */ +#define HP100_ACC_PHY 0x01 /* 0:No, 1:Yes allow Rx of ALL phys. pkts */ +#define HP100_MAC1MODEMASK 0xf0 /* Hide ACC bits */ +#define HP100_MAC1MODE1 0x00 /* Receive nothing, must also disable RX */ +#define HP100_MAC1MODE2 0x00 +#define HP100_MAC1MODE3 HP100_MAC1MODE2 | HP100_ACC_BC +#define HP100_MAC1MODE4 HP100_MAC1MODE3 | HP100_ACC_MC +#define HP100_MAC1MODE5 HP100_MAC1MODE4 /* set mc hash to all ones also */ +#define HP100_MAC1MODE6 HP100_MAC1MODE5 | HP100_ACC_PHY /* Promiscuous */ +/* Note MODE6 will receive all GOOD packets on the LAN. This really needs + a mode 7 defined to be LAN Analyzer mode, which will receive errored and + runt packets, and keep the CRC bytes. */ +#define HP100_MAC1MODE7 HP100_MAC1MODE6 | HP100_ACC_ERRORED + +/* + * MAC Configuration Register II + * (Page MAC_CTRL, MAC_CFG_2, Offset 0x0d) + */ +#define HP100_TR_MODE 0x80 /* 0:No, 1:Yes support Token Ring formats */ +#define HP100_TX_SAME 0x40 /* 0:No, 1:Yes Tx same packet continuous */ +#define HP100_LBK_XCVR 0x20 /* 0:No, 1:Yes loopback through MAC & */ + /* transceiver */ +#define HP100_LBK_MAC 0x10 /* 0:No, 1:Yes loopback through MAC */ +#define HP100_CRC_I 0x08 /* 0:No, 1:Yes inhibit CRC on Tx packets */ +#define HP100_ACCNA 0x04 /* 1: For 802.5: Accept only token ring + * group addr that maches NA mask */ +#define HP100_KEEP_CRC 0x02 /* 0:No, 1:Yes keep CRC on Rx packets. */ + /* The length will reflect this. */ +#define HP100_ACCFA 0x01 /* 1: For 802.5: Accept only functional + * addrs that match FA mask (page1) */ +#define HP100_MAC2MODEMASK 0x02 +#define HP100_MAC2MODE1 0x00 +#define HP100_MAC2MODE2 0x00 +#define HP100_MAC2MODE3 0x00 +#define HP100_MAC2MODE4 0x00 +#define HP100_MAC2MODE5 0x00 +#define HP100_MAC2MODE6 0x00 +#define HP100_MAC2MODE7 KEEP_CRC + +/* + * MAC Configuration Register III + * (Page MAC_CTRL, MAC_CFG_3, Offset 0x0e) + */ +#define HP100_PACKET_PACE 0x03 /* Packet Pacing: + * 00: No packet pacing + * 01: 8 to 16 uS delay + * 10: 16 to 32 uS delay + * 11: 32 to 64 uS delay + */ +#define HP100_LRF_EN 0x04 /* 1: External LAN Rcv Filter and + * TCP/IP Checksumming enabled. */ +#define HP100_AUTO_MODE 0x10 /* 1: AutoSelect between 10/100 */ + +/* + * MAC Configuration Register IV + * (Page MAC_CTRL, MAC_CFG_4, Offset 0x0f) + */ +#define HP100_MAC_SEL_ST 0x01 /* (R): Status of external VGSEL + * Signal, 1=100VG, 0=10Mbit sel. */ +#define HP100_LINK_FAIL_ST 0x02 /* (R): Status of Link Fail portion + * of the Misc. Interrupt */ + +/* + * 100 MB LAN Training Request/Allowed Registers + * (Page MAC_CTRL, TRAIN_REQUEST and TRAIN_ALLOW, Offset 0x14-0x16)(ETR parts only) + */ +#define HP100_MACRQ_REPEATER 0x0001 /* 1: MAC tells HUB it wants to be + * a cascaded repeater + * 0: ... wants to be a DTE */ +#define HP100_MACRQ_PROMSC 0x0006 /* 2 bits: Promiscious mode + * 00: Rcv only unicast packets + * specifically addr to this + * endnode + * 10: Rcv all pckts fwded by + * the local repeater */ +#define HP100_MACRQ_FRAMEFMT_EITHER 0x0018 /* 11: either format allowed */ +#define HP100_MACRQ_FRAMEFMT_802_3 0x0000 /* 00: 802.3 is requested */ +#define HP100_MACRQ_FRAMEFMT_802_5 0x0010 /* 10: 802.5 format is requested */ +#define HP100_CARD_MACVER 0xe000 /* R: 3 bit Cards 100VG MAC version */ +#define HP100_MALLOW_REPEATER 0x0001 /* If reset, requested access as an + * end node is allowed */ +#define HP100_MALLOW_PROMSC 0x0004 /* 2 bits: Promiscious mode + * 00: Rcv only unicast packets + * specifically addr to this + * endnode + * 10: Rcv all pckts fwded by + * the local repeater */ +#define HP100_MALLOW_FRAMEFMT 0x00e0 /* 2 bits: Frame Format + * 00: 802.3 format will be used + * 10: 802.5 format will be used */ +#define HP100_MALLOW_ACCDENIED 0x0400 /* N bit */ +#define HP100_MALLOW_CONFIGURE 0x0f00 /* C bit */ +#define HP100_MALLOW_DUPADDR 0x1000 /* D bit */ +#define HP100_HUB_MACVER 0xe000 /* R: 3 bit 802.12 MAC/RMAC training */ + /* protocol of repeater */ + +/* ****************************************************************************** */ + +/* + * Set/Reset bits + */ +#define HP100_SET_HB 0x0100 /* 0:Set fields to 0 whose mask is 1 */ +#define HP100_SET_LB 0x0001 /* HB sets upper byte, LB sets lower byte */ +#define HP100_RESET_HB 0x0000 /* For readability when resetting bits */ +#define HP100_RESET_LB 0x0000 /* For readability when resetting bits */ + +/* + * Misc. Constants + */ +#define HP100_LAN_100 100 /* lan_type value for VG */ +#define HP100_LAN_10 10 /* lan_type value for 10BaseT */ +#define HP100_LAN_COAX 9 /* lan_type value for Coax */ +#define HP100_LAN_ERR (-1) /* lan_type value for link down */ + +/* + * Bus Master Data Structures ---------------------------------------------- + */ + +#define MAX_RX_PDL 30 /* Card limit = 31 */ +#define MAX_RX_FRAG 2 /* Don't need more... */ +#define MAX_TX_PDL 29 +#define MAX_TX_FRAG 2 /* Limit = 31 */ + +/* Define total PDL area size in bytes (should be 4096) */ +/* This is the size of kernel (dma) memory that will be allocated. */ +#define MAX_RINGSIZE ((MAX_RX_FRAG*8+4+4)*MAX_RX_PDL+(MAX_TX_FRAG*8+4+4)*MAX_TX_PDL)+16 + +/* Ethernet Packet Sizes */ +#define MIN_ETHER_SIZE 60 +#define MAX_ETHER_SIZE 1514 /* Needed for preallocation of */ + /* skb buffer when busmastering */ + +/* Tx or Rx Ring Entry */ +typedef struct hp100_ring { + u_int *pdl; /* Address of PDLs PDH, dword before + * this address is used for rx hdr */ + u_int pdl_paddr; /* Physical address of PDL */ + struct sk_buff *skb; + struct hp100_ring *next; +} hp100_ring_t; + + + +/* Mask for Header Descriptor */ +#define HP100_PKT_LEN_MASK 0x1FFF /* AND with RxLength to get length */ + + +/* Receive Packet Status. Note, the error bits are only valid if ACC_ERRORED + bit in the MAC Configuration Register 1 is set. */ +#define HP100_RX_PRI 0x8000 /* 0:No, 1:Yes packet is priority */ +#define HP100_SDF_ERR 0x4000 /* 0:No, 1:Yes start of frame error */ +#define HP100_SKEW_ERR 0x2000 /* 0:No, 1:Yes skew out of range */ +#define HP100_BAD_SYMBOL_ERR 0x1000 /* 0:No, 1:Yes invalid symbol received */ +#define HP100_RCV_IPM_ERR 0x0800 /* 0:No, 1:Yes pkt had an invalid packet */ + /* marker */ +#define HP100_SYMBOL_BAL_ERR 0x0400 /* 0:No, 1:Yes symbol balance error */ +#define HP100_VG_ALN_ERR 0x0200 /* 0:No, 1:Yes non-octet received */ +#define HP100_TRUNC_ERR 0x0100 /* 0:No, 1:Yes the packet was truncated */ +#define HP100_RUNT_ERR 0x0040 /* 0:No, 1:Yes pkt length < Min Pkt */ + /* Length Reg. */ +#define HP100_ALN_ERR 0x0010 /* 0:No, 1:Yes align error. */ +#define HP100_CRC_ERR 0x0008 /* 0:No, 1:Yes CRC occurred. */ + +/* The last three bits indicate the type of destination address */ + +#define HP100_MULTI_ADDR_HASH 0x0006 /* 110: Addr multicast, matched hash */ +#define HP100_BROADCAST_ADDR 0x0003 /* x11: Addr broadcast */ +#define HP100_MULTI_ADDR_NO_HASH 0x0002 /* 010: Addr multicast, didn't match hash */ +#define HP100_PHYS_ADDR_MATCH 0x0001 /* x01: Addr was physical and mine */ +#define HP100_PHYS_ADDR_NO_MATCH 0x0000 /* x00: Addr was physical but not mine */ + +/* + * macros + */ + +#define hp100_inb( reg ) \ + inb( ioaddr + HP100_REG_##reg ) +#define hp100_inw( reg ) \ + inw( ioaddr + HP100_REG_##reg ) +#define hp100_inl( reg ) \ + inl( ioaddr + HP100_REG_##reg ) +#define hp100_outb( data, reg ) \ + outb( data, ioaddr + HP100_REG_##reg ) +#define hp100_outw( data, reg ) \ + outw( data, ioaddr + HP100_REG_##reg ) +#define hp100_outl( data, reg ) \ + outl( data, ioaddr + HP100_REG_##reg ) +#define hp100_orb( data, reg ) \ + outb( inb( ioaddr + HP100_REG_##reg ) | (data), ioaddr + HP100_REG_##reg ) +#define hp100_orw( data, reg ) \ + outw( inw( ioaddr + HP100_REG_##reg ) | (data), ioaddr + HP100_REG_##reg ) +#define hp100_andb( data, reg ) \ + outb( inb( ioaddr + HP100_REG_##reg ) & (data), ioaddr + HP100_REG_##reg ) +#define hp100_andw( data, reg ) \ + outw( inw( ioaddr + HP100_REG_##reg ) & (data), ioaddr + HP100_REG_##reg ) + +#define hp100_page( page ) \ + outw( HP100_PAGE_##page, ioaddr + HP100_REG_PAGING ) +#define hp100_ints_off() \ + outw( HP100_INT_EN | HP100_RESET_LB, ioaddr + HP100_REG_OPTION_LSW ) +#define hp100_ints_on() \ + outw( HP100_INT_EN | HP100_SET_LB, ioaddr + HP100_REG_OPTION_LSW ) +#define hp100_mem_map_enable() \ + outw( HP100_MMAP_DIS | HP100_RESET_HB, ioaddr + HP100_REG_OPTION_LSW ) +#define hp100_mem_map_disable() \ + outw( HP100_MMAP_DIS | HP100_SET_HB, ioaddr + HP100_REG_OPTION_LSW ) diff --git a/drivers/staging/most/sound/sound.c b/drivers/staging/most/sound/sound.c index 79817061fcfa..add16997f129 100644 --- a/drivers/staging/most/sound/sound.c +++ b/drivers/staging/most/sound/sound.c @@ -344,8 +344,7 @@ static int pcm_hw_params(struct snd_pcm_substream *substream, pr_err("Requested number of channels not supported.\n"); return -EINVAL; } - return snd_pcm_lib_alloc_vmalloc_buffer(substream, - params_buffer_bytes(hw_params)); + return snd_pcm_lib_malloc_pages(substream, params_buffer_bytes(hw_params)); } /** @@ -359,7 +358,7 @@ static int pcm_hw_params(struct snd_pcm_substream *substream, */ static int pcm_hw_free(struct snd_pcm_substream *substream) { - return snd_pcm_lib_free_vmalloc_buffer(substream); + return snd_pcm_lib_free_pages(substream); } /** @@ -469,7 +468,6 @@ static const struct snd_pcm_ops pcm_ops = { .prepare = pcm_prepare, .trigger = pcm_trigger, .pointer = pcm_pointer, - .page = snd_pcm_lib_get_vmalloc_page, }; static int split_arg_list(char *buf, u16 *ch_num, char **sample_res) @@ -663,6 +661,8 @@ skip_adpt_alloc: pcm->private_data = channel; strscpy(pcm->name, device_name, sizeof(pcm->name)); snd_pcm_set_ops(pcm, direction, &pcm_ops); + snd_pcm_lib_preallocate_pages_for_all(pcm, SNDRV_DMA_TYPE_VMALLOC, + NULL, 0, 0); return 0; diff --git a/drivers/staging/octeon/ethernet-tx.c b/drivers/staging/octeon/ethernet-tx.c index c64728fc21f2..83469061a542 100644 --- a/drivers/staging/octeon/ethernet-tx.c +++ b/drivers/staging/octeon/ethernet-tx.c @@ -261,11 +261,11 @@ int cvm_oct_xmit(struct sk_buff *skb, struct net_device *dev) /* Build the PKO buffer pointer */ hw_buffer.u64 = 0; if (skb_shinfo(skb)->nr_frags == 0) { - hw_buffer.s.addr = XKPHYS_TO_PHYS((u64)skb->data); + hw_buffer.s.addr = XKPHYS_TO_PHYS((uintptr_t)skb->data); hw_buffer.s.pool = 0; hw_buffer.s.size = skb->len; } else { - hw_buffer.s.addr = XKPHYS_TO_PHYS((u64)skb->data); + hw_buffer.s.addr = XKPHYS_TO_PHYS((uintptr_t)skb->data); hw_buffer.s.pool = 0; hw_buffer.s.size = skb_headlen(skb); CVM_OCT_SKB_CB(skb)[0] = hw_buffer.u64; @@ -273,11 +273,12 @@ int cvm_oct_xmit(struct sk_buff *skb, struct net_device *dev) skb_frag_t *fs = skb_shinfo(skb)->frags + i; hw_buffer.s.addr = - XKPHYS_TO_PHYS((u64)skb_frag_address(fs)); + XKPHYS_TO_PHYS((uintptr_t)skb_frag_address(fs)); hw_buffer.s.size = skb_frag_size(fs); CVM_OCT_SKB_CB(skb)[i + 1] = hw_buffer.u64; } - hw_buffer.s.addr = XKPHYS_TO_PHYS((u64)CVM_OCT_SKB_CB(skb)); + hw_buffer.s.addr = + XKPHYS_TO_PHYS((uintptr_t)CVM_OCT_SKB_CB(skb)); hw_buffer.s.size = skb_shinfo(skb)->nr_frags + 1; pko_command.s.segs = skb_shinfo(skb)->nr_frags + 1; pko_command.s.gather = 1; @@ -349,10 +350,8 @@ int cvm_oct_xmit(struct sk_buff *skb, struct net_device *dev) */ dst_release(skb_dst(skb)); skb_dst_set(skb, NULL); -#ifdef CONFIG_XFRM - secpath_reset(skb); -#endif - nf_reset(skb); + skb_ext_reset(skb); + nf_reset_ct(skb); #ifdef CONFIG_NET_SCHED skb->tc_index = 0; diff --git a/drivers/staging/octeon/octeon-stubs.h b/drivers/staging/octeon/octeon-stubs.h index a4ac3bfb62a8..b78ce9eaab85 100644 --- a/drivers/staging/octeon/octeon-stubs.h +++ b/drivers/staging/octeon/octeon-stubs.h @@ -1202,7 +1202,7 @@ static inline int cvmx_wqe_get_grp(cvmx_wqe_t *work) static inline void *cvmx_phys_to_ptr(uint64_t physical_address) { - return (void *)(physical_address); + return (void *)(uintptr_t)(physical_address); } static inline uint64_t cvmx_ptr_to_phys(void *ptr) diff --git a/drivers/staging/rtl8188eu/hal/hal8188e_rate_adaptive.c b/drivers/staging/rtl8188eu/hal/hal8188e_rate_adaptive.c index 9ddd51685063..5792f491b59a 100644 --- a/drivers/staging/rtl8188eu/hal/hal8188e_rate_adaptive.c +++ b/drivers/staging/rtl8188eu/hal/hal8188e_rate_adaptive.c @@ -409,7 +409,7 @@ static int odm_ARFBRefresh_8188E(struct odm_dm_struct *dm_odm, struct odm_ra_inf pRaInfo->PTModeSS = 3; else if (pRaInfo->HighestRate > 0x0b) pRaInfo->PTModeSS = 2; - else if (pRaInfo->HighestRate > 0x0b) + else if (pRaInfo->HighestRate > 0x03) pRaInfo->PTModeSS = 1; else pRaInfo->PTModeSS = 0; diff --git a/drivers/staging/rtl8188eu/os_dep/usb_intf.c b/drivers/staging/rtl8188eu/os_dep/usb_intf.c index 664d93a7f90d..4fac9dca798e 100644 --- a/drivers/staging/rtl8188eu/os_dep/usb_intf.c +++ b/drivers/staging/rtl8188eu/os_dep/usb_intf.c @@ -348,8 +348,10 @@ static struct adapter *rtw_usb_if1_init(struct dvobj_priv *dvobj, } padapter->HalData = kzalloc(sizeof(struct hal_data_8188e), GFP_KERNEL); - if (!padapter->HalData) - DBG_88E("cant not alloc memory for HAL DATA\n"); + if (!padapter->HalData) { + DBG_88E("Failed to allocate memory for HAL data\n"); + goto free_adapter; + } /* step read_chip_version */ rtw_hal_read_chip_version(padapter); diff --git a/drivers/staging/speakup/sysfs-driver-speakup b/drivers/staging/speakup/sysfs-driver-speakup new file mode 100644 index 000000000000..be3f5d6962e9 --- /dev/null +++ b/drivers/staging/speakup/sysfs-driver-speakup @@ -0,0 +1,369 @@ +What: /sys/accessibility/speakup/attrib_bleep +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Beeps the PC speaker when there is an attribute change such as + foreground or background color when using speakup review + commands. One = on, zero = off. + +What: /sys/accessibility/speakup/bell_pos +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This works much like a typewriter bell. If for example 72 is + echoed to bell_pos, it will beep the PC speaker when typing on + a line past character 72. + +What: /sys/accessibility/speakup/bleeps +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This controls whether one hears beeps through the PC speaker + when using speakup's review commands. + TODO: what values does it accept? + +What: /sys/accessibility/speakup/bleep_time +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This controls the duration of the PC speaker beeps speakup + produces. + TODO: What are the units? Jiffies? + +What: /sys/accessibility/speakup/cursor_time +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This controls cursor delay when using arrow keys. When a + connection is very slow, with the default setting, when moving + with the arrows, or backspacing etc. speakup says the incorrect + characters. Set this to a higher value to adjust for the delay + and better synchronisation between cursor position and speech. + +What: /sys/accessibility/speakup/delimiters +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Delimit a word from speakup. + TODO: add more info + +What: /sys/accessibility/speakup/ex_num +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: TODO: + +What: /sys/accessibility/speakup/key_echo +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Controls if speakup speaks keys when they are typed. One = on, + zero = off or don't echo keys. + +What: /sys/accessibility/speakup/keymap +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Speakup keymap remaps keys to Speakup functions. + It uses a binary + format. A special program called genmap is needed to compile a + textual keymap into the binary format which is then loaded into + /sys/accessibility/speakup/keymap. + +What: /sys/accessibility/speakup/no_interrupt +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Controls if typing interrupts output from speakup. With + no_interrupt set to zero, typing on the keyboard will interrupt + speakup if for example + the say screen command is used before the + entire screen is read. + With no_interrupt set to one, if the say + screen command is used, and one then types on the keyboard, + speakup will continue to say the whole screen regardless until + it finishes. + +What: /sys/accessibility/speakup/punc_all +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This is a list of all the punctuation speakup should speak when + punc_level is set to four. + +What: /sys/accessibility/speakup/punc_level +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Controls the level of punctuation spoken as the screen is + displayed, not reviewed. Levels range from zero no punctuation, + to four, all punctuation. One corresponds to punc_some, two + corresponds to punc_most, and three as well as four both + correspond to punc_all. Some hardware synthesizers may have + different levels each corresponding to three and four for + punc_level. Also note that if punc_level is set to zero, and + key_echo is set to one, typed punctuation is still spoken as it + is typed. + +What: /sys/accessibility/speakup/punc_most +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This is a list of all the punctuation speakup should speak when + punc_level is set to two. + +What: /sys/accessibility/speakup/punc_some +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This is a list of all the punctuation speakup should speak when + punc_level is set to one. + +What: /sys/accessibility/speakup/reading_punc +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Almost the same as punc_level, the differences being that + reading_punc controls the level of punctuation when reviewing + the screen with speakup's screen review commands. The other + difference is that reading_punc set to three speaks punc_all, + and reading_punc set to four speaks all punctuation, including + spaces. + +What: /sys/accessibility/speakup/repeats +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: A list of characters speakup repeats. Normally, when there are + more than three characters in a row, speakup + just reads three of + those characters. For example, "......" would be read as dot, + dot, dot. If a . is added to the list of characters in repeats, + "......" would be read as dot, dot, dot, times six. + +What: /sys/accessibility/speakup/say_control +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: If set to one, speakup speaks shift, alt and control when those + keys are pressed. If say_control is set to zero, shift, ctrl, + and alt are not spoken when they are pressed. + +What: /sys/accessibility/speakup/say_word_ctl +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: TODO: + +What: /sys/accessibility/speakup/silent +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: TODO: + +What: /sys/accessibility/speakup/spell_delay +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This controls how fast a word is spelled + when speakup's say word + review command is pressed twice quickly to speak the current + word being reviewed. Zero just speaks the letters one after + another, while values one through four + seem to introduce more of + a pause between the spelling of each letter by speakup. + +What: /sys/accessibility/speakup/synth +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Gets or sets the synthesizer driver currently in use. Reading + synth returns the synthesizer driver currently in use. Writing + synth switches to the given synthesizer driver, provided it is + either built into the kernel, or already loaded as a module. + +What: /sys/accessibility/speakup/synth_direct +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Sends whatever is written to synth_direct + directly to the speech synthesizer in use, bypassing speakup. + This could be used to make the synthesizer speak + a string, or to + send control sequences to the synthesizer to change how the + synthesizer behaves. + +What: /sys/accessibility/speakup/version +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Reading version returns the version of speakup, and the version + of the synthesizer driver currently in use. + +What: /sys/accessibility/speakup/i18n/announcements +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This file contains various general announcements, most of which + cannot be categorized. You will find messages such as "You + killed Speakup", "I'm alive", "leaving help", "parked", + "unparked", and others. You will also find the names of the + screen edges and cursor tracking modes here. + +What: /sys/accessibility/speakup/i18n/chartab +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: TODO + +What: /sys/accessibility/speakup/i18n/ctl_keys +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Here, you will find names of control keys. These are used with + Speakup's say_control feature. + +What: /sys/accessibility/speakup/i18n/function_names +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Here, you will find a list of names for Speakup functions. + These are used by the help system. For example, suppose that + you have activated help mode, and you pressed + keypad 3. Speakup + says: "keypad 3 is character, say next." + The message "character, say next" names a Speakup function, and + it comes from this function_names file. + +What: /sys/accessibility/speakup/i18n/states +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This file contains names for key states. + Again, these are part of the help system. For instance, if you + had pressed speakup + keypad 3, you would hear: + "speakup keypad 3 is go to bottom edge." + The speakup key is depressed, so the name of the key state is + speakup. + This part of the message comes from the states collection. + +What: /sys/accessibility/speakup/i18n/characters +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Through this sys entry, Speakup gives you the ability to change + how Speakup pronounces a given character. You could, for + example, change how some punctuation characters are spoken. You + can even change how Speakup will pronounce certain letters. For + further details see '12. Changing the Pronunciation of + Characters' in Speakup User's Guide (file spkguide.txt in + source). + +What: /sys/accessibility/speakup/i18n/colors +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: When you use the "say attributes" function, Speakup says the + name of the foreground and background colors. These names come + from the i18n/colors file. + +What: /sys/accessibility/speakup/i18n/formatted +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This group of messages contains embedded formatting codes, to + specify the type and width of displayed data. If you change + these, you must preserve all of the formatting codes, and they + must appear in the order used by the default messages. + +What: /sys/accessibility/speakup/i18n/key_names +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Again, key_names is used by Speakup's help system. In the + previous example, Speakup said that you pressed "keypad 3." + This name came from the key_names file. + +What: /sys/accessibility/speakup/<synth-name>/ +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: In `/sys/accessibility/speakup` is a directory corresponding to + the synthesizer driver currently in use (E.G) `soft` for the + soft driver. This directory contains files which control the + speech synthesizer itself, + as opposed to controlling the speakup + screen reader. The parameters in this directory have the same + names and functions across all + supported synthesizers. The range + of values for freq, pitch, rate, and vol is the same for all + supported synthesizers, with the given range being internally + mapped by the driver to more or less fit the range of values + supported for a given parameter by the individual synthesizer. + Below is a description of values and parameters for soft + synthesizer, which is currently the most commonly used. + +What: /sys/accessibility/speakup/soft/caps_start +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This is the string that is sent to the synthesizer to cause it + to start speaking uppercase letters. For the soft synthesizer + and most others, this causes the pitch of the voice to rise + above the currently set pitch. + +What: /sys/accessibility/speakup/soft/caps_stop +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This is the string sent to the synthesizer to cause it to stop + speaking uppercase letters. In the case of the soft synthesizer + and most others, this returns the pitch of the voice + down to the + currently set pitch. + +What: /sys/accessibility/speakup/soft/delay_time +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: TODO: + +What: /sys/accessibility/speakup/soft/direct +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Controls if punctuation is spoken by speakup, or by the + synthesizer. + For example, speakup speaks ">" as "greater", while + the espeak synthesizer used by the soft driver speaks "greater + than". Zero lets speakup speak the punctuation. One lets the + synthesizer itself speak punctuation. + +What: /sys/accessibility/speakup/soft/freq +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Gets or sets the frequency of the speech synthesizer. Range is + 0-9. + +What: /sys/accessibility/speakup/soft/full_time +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: TODO: + +What: /sys/accessibility/speakup/soft/jiffy_delta +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: This controls how many jiffys the kernel gives to the + synthesizer. Setting this too high can make a system unstable, + or even crash it. + +What: /sys/accessibility/speakup/soft/pitch +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Gets or sets the pitch of the synthesizer. The range is 0-9. + +What: /sys/accessibility/speakup/soft/punct +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Gets or sets the amount of punctuation spoken by the + synthesizer. The range for the soft driver seems to be 0-2. + TODO: How is this related to speakup's punc_level, or + reading_punc. + +What: /sys/accessibility/speakup/soft/rate +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Gets or sets the rate of the synthesizer. Range is from zero + slowest, to nine fastest. + +What: /sys/accessibility/speakup/soft/tone +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Gets or sets the tone of the speech synthesizer. The range for + the soft driver seems to be 0-2. This seems to make no + difference if using espeak and the espeakup connector. + TODO: does espeakup support different tonalities? + +What: /sys/accessibility/speakup/soft/trigger_time +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: TODO: + +What: /sys/accessibility/speakup/soft/voice +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Gets or sets the voice used by the synthesizer if the + synthesizer can speak in more than one voice. The range for the + soft driver is 0-7. Note that while espeak supports multiple + voices, this parameter will not set the voice when the espeakup + connector is used between speakup and espeak. + +What: /sys/accessibility/speakup/soft/vol +KernelVersion: 2.6 +Contact: speakup@linux-speakup.org +Description: Gets or sets the volume of the speech synthesizer. Range is 0-9, + with zero being the softest, and nine being the loudest. + diff --git a/drivers/staging/vc04_services/bcm2835-audio/bcm2835-pcm.c b/drivers/staging/vc04_services/bcm2835-audio/bcm2835-pcm.c index bc1eaa3a0773..826016c3431a 100644 --- a/drivers/staging/vc04_services/bcm2835-audio/bcm2835-pcm.c +++ b/drivers/staging/vc04_services/bcm2835-audio/bcm2835-pcm.c @@ -12,7 +12,7 @@ static const struct snd_pcm_hardware snd_bcm2835_playback_hw = { .info = (SNDRV_PCM_INFO_INTERLEAVED | SNDRV_PCM_INFO_BLOCK_TRANSFER | SNDRV_PCM_INFO_MMAP | SNDRV_PCM_INFO_MMAP_VALID | - SNDRV_PCM_INFO_DRAIN_TRIGGER | SNDRV_PCM_INFO_SYNC_APPLPTR), + SNDRV_PCM_INFO_SYNC_APPLPTR), .formats = SNDRV_PCM_FMTBIT_U8 | SNDRV_PCM_FMTBIT_S16_LE, .rates = SNDRV_PCM_RATE_CONTINUOUS | SNDRV_PCM_RATE_8000_48000, .rate_min = 8000, @@ -29,7 +29,7 @@ static const struct snd_pcm_hardware snd_bcm2835_playback_hw = { static const struct snd_pcm_hardware snd_bcm2835_playback_spdif_hw = { .info = (SNDRV_PCM_INFO_INTERLEAVED | SNDRV_PCM_INFO_BLOCK_TRANSFER | SNDRV_PCM_INFO_MMAP | SNDRV_PCM_INFO_MMAP_VALID | - SNDRV_PCM_INFO_DRAIN_TRIGGER | SNDRV_PCM_INFO_SYNC_APPLPTR), + SNDRV_PCM_INFO_SYNC_APPLPTR), .formats = SNDRV_PCM_FMTBIT_S16_LE, .rates = SNDRV_PCM_RATE_CONTINUOUS | SNDRV_PCM_RATE_44100 | SNDRV_PCM_RATE_48000, diff --git a/drivers/staging/vc04_services/bcm2835-audio/bcm2835-vchiq.c b/drivers/staging/vc04_services/bcm2835-audio/bcm2835-vchiq.c index 23fba01107b9..c6f9cf1913d2 100644 --- a/drivers/staging/vc04_services/bcm2835-audio/bcm2835-vchiq.c +++ b/drivers/staging/vc04_services/bcm2835-audio/bcm2835-vchiq.c @@ -289,6 +289,7 @@ int bcm2835_audio_stop(struct bcm2835_alsa_stream *alsa_stream) VC_AUDIO_MSG_TYPE_STOP, false); } +/* FIXME: this doesn't seem working as expected for "draining" */ int bcm2835_audio_drain(struct bcm2835_alsa_stream *alsa_stream) { struct vc_audio_msg m = { diff --git a/drivers/staging/vt6655/device_main.c b/drivers/staging/vt6655/device_main.c index c6bb4aaf9bd0..082302944c37 100644 --- a/drivers/staging/vt6655/device_main.c +++ b/drivers/staging/vt6655/device_main.c @@ -1748,8 +1748,10 @@ vt6655_probe(struct pci_dev *pcid, const struct pci_device_id *ent) priv->hw->max_signal = 100; - if (vnt_init(priv)) + if (vnt_init(priv)) { + device_free_info(priv); return -ENODEV; + } device_print_info(priv); pci_set_drvdata(pcid, priv); diff --git a/drivers/staging/wlan-ng/cfg80211.c b/drivers/staging/wlan-ng/cfg80211.c index eee1998c4b18..fac38c842ac5 100644 --- a/drivers/staging/wlan-ng/cfg80211.c +++ b/drivers/staging/wlan-ng/cfg80211.c @@ -469,10 +469,8 @@ static int prism2_connect(struct wiphy *wiphy, struct net_device *dev, /* Set the encryption - we only support wep */ if (is_wep) { if (sme->key) { - if (sme->key_idx >= NUM_WEPKEYS) { - err = -EINVAL; - goto exit; - } + if (sme->key_idx >= NUM_WEPKEYS) + return -EINVAL; result = prism2_domibset_uint32(wlandev, DIDMIB_DOT11SMT_PRIVACYTABLE_WEPDEFAULTKEYID, |