From 5b7c4cabbb65f5c469464da6c5f614cbd7f730f2 Mon Sep 17 00:00:00 2001 From: Linus Torvalds Date: Tue, 21 Feb 2023 18:24:12 -0800 Subject: Merge tag 'net-next-6.3' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net-next Pull networking updates from Jakub Kicinski: "Core: - Add dedicated kmem_cache for typical/small skb->head, avoid having to access struct page at kfree time, and improve memory use. - Introduce sysctl to set default RPS configuration for new netdevs. - Define Netlink protocol specification format which can be used to describe messages used by each family and auto-generate parsers. Add tools for generating kernel data structures and uAPI headers. - Expose all net/core sysctls inside netns. - Remove 4s sleep in netpoll if carrier is instantly detected on boot. - Add configurable limit of MDB entries per port, and port-vlan. - Continue populating drop reasons throughout the stack. - Retire a handful of legacy Qdiscs and classifiers. Protocols: - Support IPv4 big TCP (TSO frames larger than 64kB). - Add IP_LOCAL_PORT_RANGE socket option, to control local port range on socket by socket basis. - Track and report in procfs number of MPTCP sockets used. - Support mixing IPv4 and IPv6 flows in the in-kernel MPTCP path manager. - IPv6: don't check net.ipv6.route.max_size and rely on garbage collection to free memory (similarly to IPv4). - Support Penultimate Segment Pop (PSP) flavor in SRv6 (RFC8986). - ICMP: add per-rate limit counters. - Add support for user scanning requests in ieee802154. - Remove static WEP support. - Support minimal Wi-Fi 7 Extremely High Throughput (EHT) rate reporting. - WiFi 7 EHT channel puncturing support (client & AP). BPF: - Add a rbtree data structure following the "next-gen data structure" precedent set by recently added linked list, that is, by using kfunc + kptr instead of adding a new BPF map type. - Expose XDP hints via kfuncs with initial support for RX hash and timestamp metadata. - Add BPF_F_NO_TUNNEL_KEY extension to bpf_skb_set_tunnel_key to better support decap on GRE tunnel devices not operating in collect metadata. - Improve x86 JIT's codegen for PROBE_MEM runtime error checks. - Remove the need for trace_printk_lock for bpf_trace_printk and bpf_trace_vprintk helpers. - Extend libbpf's bpf_tracing.h support for tracing arguments of kprobes/uprobes and syscall as a special case. - Significantly reduce the search time for module symbols by livepatch and BPF. - Enable cpumasks to be used as kptrs, which is useful for tracing programs tracking which tasks end up running on which CPUs in different time intervals. - Add support for BPF trampoline on s390x and riscv64. - Add capability to export the XDP features supported by the NIC. - Add __bpf_kfunc tag for marking kernel functions as kfuncs. - Add cgroup.memory=nobpf kernel parameter option to disable BPF memory accounting for container environments. Netfilter: - Remove the CLUSTERIP target. It has been marked as obsolete for years, and we still have WARN splats wrt races of the out-of-band /proc interface installed by this target. - Add 'destroy' commands to nf_tables. They are identical to the existing 'delete' commands, but do not return an error if the referenced object (set, chain, rule...) did not exist. Driver API: - Improve cpumask_local_spread() locality to help NICs set the right IRQ affinity on AMD platforms. - Separate C22 and C45 MDIO bus transactions more clearly. - Introduce new DCB table to control DSCP rewrite on egress. - Support configuration of Physical Layer Collision Avoidance (PLCA) Reconciliation Sublayer (RS) (802.3cg-2019). Modern version of shared medium Ethernet. - Support for MAC Merge layer (IEEE 802.3-2018 clause 99). Allowing preemption of low priority frames by high priority frames. - Add support for controlling MACSec offload using netlink SET. - Rework devlink instance refcounts to allow registration and de-registration under the instance lock. Split the code into multiple files, drop some of the unnecessarily granular locks and factor out common parts of netlink operation handling. - Add TX frame aggregation parameters (for USB drivers). - Add a new attr TCA_EXT_WARN_MSG to report TC (offload) warning messages with notifications for debug. - Allow offloading of UDP NEW connections via act_ct. - Add support for per action HW stats in TC. - Support hardware miss to TC action (continue processing in SW from a specific point in the action chain). - Warn if old Wireless Extension user space interface is used with modern cfg80211/mac80211 drivers. Do not support Wireless Extensions for Wi-Fi 7 devices at all. Everyone should switch to using nl80211 interface instead. - Improve the CAN bit timing configuration. Use extack to return error messages directly to user space, update the SJW handling, including the definition of a new default value that will benefit CAN-FD controllers, by increasing their oscillator tolerance. New hardware / drivers: - Ethernet: - nVidia BlueField-3 support (control traffic driver) - Ethernet support for imx93 SoCs - Motorcomm yt8531 gigabit Ethernet PHY - onsemi NCN26000 10BASE-T1S PHY (with support for PLCA) - Microchip LAN8841 PHY (incl. cable diagnostics and PTP) - Amlogic gxl MDIO mux - WiFi: - RealTek RTL8188EU (rtl8xxxu) - Qualcomm Wi-Fi 7 devices (ath12k) - CAN: - Renesas R-Car V4H Drivers: - Bluetooth: - Set Per Platform Antenna Gain (PPAG) for Intel controllers. - Ethernet NICs: - Intel (1G, igc): - support TSN / Qbv / packet scheduling features of i226 model - Intel (100G, ice): - use GNSS subsystem instead of TTY - multi-buffer XDP support - extend support for GPIO pins to E823 devices - nVidia/Mellanox: - update the shared buffer configuration on PFC commands - implement PTP adjphase function for HW offset control - TC support for Geneve and GRE with VF tunnel offload - more efficient crypto key management method - multi-port eswitch support - Netronome/Corigine: - add DCB IEEE support - support IPsec offloading for NFP3800 - Freescale/NXP (enetc): - support XDP_REDIRECT for XDP non-linear buffers - improve reconfig, avoid link flap and waiting for idle - support MAC Merge layer - Other NICs: - sfc/ef100: add basic devlink support for ef100 - ionic: rx_push mode operation (writing descriptors via MMIO) - bnxt: use the auxiliary bus abstraction for RDMA - r8169: disable ASPM and reset bus in case of tx timeout - cpsw: support QSGMII mode for J721e CPSW9G - cpts: support pulse-per-second output - ngbe: add an mdio bus driver - usbnet: optimize usbnet_bh() by avoiding unnecessary queuing - r8152: handle devices with FW with NCM support - amd-xgbe: support 10Mbps, 2.5GbE speeds and rx-adaptation - virtio-net: support multi buffer XDP - virtio/vsock: replace virtio_vsock_pkt with sk_buff - tsnep: XDP support - Ethernet high-speed switches: - nVidia/Mellanox (mlxsw): - add support for latency TLV (in FW control messages) - Microchip (sparx5): - separate explicit and implicit traffic forwarding rules, make the implicit rules always active - add support for egress DSCP rewrite - IS0 VCAP support (Ingress Classification) - IS2 VCAP filters (protos, L3 addrs, L4 ports, flags, ToS etc.) - ES2 VCAP support (Egress Access Control) - support for Per-Stream Filtering and Policing (802.1Q, 8.6.5.1) - Ethernet embedded switches: - Marvell (mv88e6xxx): - add MAB (port auth) offload support - enable PTP receive for mv88e6390 - NXP (ocelot): - support MAC Merge layer - support for the the vsc7512 internal copper phys - Microchip: - lan9303: convert to PHYLINK - lan966x: support TC flower filter statistics - lan937x: PTP support for KSZ9563/KSZ8563 and LAN937x - lan937x: support Credit Based Shaper configuration - ksz9477: support Energy Efficient Ethernet - other: - qca8k: convert to regmap read/write API, use bulk operations - rswitch: Improve TX timestamp accuracy - Intel WiFi (iwlwifi): - EHT (Wi-Fi 7) rate reporting - STEP equalizer support: transfer some STEP (connection to radio on platforms with integrated wifi) related parameters from the BIOS to the firmware. - Qualcomm 802.11ax WiFi (ath11k): - IPQ5018 support - Fine Timing Measurement (FTM) responder role support - channel 177 support - MediaTek WiFi (mt76): - per-PHY LED support - mt7996: EHT (Wi-Fi 7) support - Wireless Ethernet Dispatch (WED) reset support - switch to using page pool allocator - RealTek WiFi (rtw89): - support new version of Bluetooth co-existance - Mobile: - rmnet: support TX aggregation" * tag 'net-next-6.3' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net-next: (1872 commits) page_pool: add a comment explaining the fragment counter usage net: ethtool: fix __ethtool_dev_mm_supported() implementation ethtool: pse-pd: Fix double word in comments xsk: add linux/vmalloc.h to xsk.c sefltests: netdevsim: wait for devlink instance after netns removal selftest: fib_tests: Always cleanup before exit net/mlx5e: Align IPsec ASO result memory to be as required by hardware net/mlx5e: TC, Set CT miss to the specific ct action instance net/mlx5e: Rename CHAIN_TO_REG to MAPPED_OBJ_TO_REG net/mlx5: Refactor tc miss handling to a single function net/mlx5: Kconfig: Make tc offload depend on tc skb extension net/sched: flower: Support hardware miss to tc action net/sched: flower: Move filter handle initialization earlier net/sched: cls_api: Support hardware miss to tc action net/sched: Rename user cookie and act cookie sfc: fix builds without CONFIG_RTC_LIB sfc: clean up some inconsistent indentings net/mlx4_en: Introduce flexible array to silence overflow warning net: lan966x: Fix possible deadlock inside PTP net/ulp: Remove redundant ->clone() test in inet_clone_ulp(). ... --- drivers/gpu/drm/radeon/radeon_bios.c | 724 +++++++++++++++++++++++++++++++++++ 1 file changed, 724 insertions(+) create mode 100644 drivers/gpu/drm/radeon/radeon_bios.c (limited to 'drivers/gpu/drm/radeon/radeon_bios.c') diff --git a/drivers/gpu/drm/radeon/radeon_bios.c b/drivers/gpu/drm/radeon/radeon_bios.c new file mode 100644 index 000000000..63bdc9f6f --- /dev/null +++ b/drivers/gpu/drm/radeon/radeon_bios.c @@ -0,0 +1,724 @@ +/* + * Copyright 2008 Advanced Micro Devices, Inc. + * Copyright 2008 Red Hat Inc. + * Copyright 2009 Jerome Glisse. + * + * Permission is hereby granted, free of charge, to any person obtaining a + * copy of this software and associated documentation files (the "Software"), + * to deal in the Software without restriction, including without limitation + * the rights to use, copy, modify, merge, publish, distribute, sublicense, + * and/or sell copies of the Software, and to permit persons to whom the + * Software is furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL + * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR + * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, + * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR + * OTHER DEALINGS IN THE SOFTWARE. + * + * Authors: Dave Airlie + * Alex Deucher + * Jerome Glisse + */ + +#include +#include +#include + +#include + +#include "atom.h" +#include "radeon.h" +#include "radeon_reg.h" + +/* + * BIOS. + */ + +/* If you boot an IGP board with a discrete card as the primary, + * the IGP rom is not accessible via the rom bar as the IGP rom is + * part of the system bios. On boot, the system bios puts a + * copy of the igp rom at the start of vram if a discrete card is + * present. + */ +static bool igp_read_bios_from_vram(struct radeon_device *rdev) +{ + uint8_t __iomem *bios; + resource_size_t vram_base; + resource_size_t size = 256 * 1024; /* ??? */ + + if (!(rdev->flags & RADEON_IS_IGP)) + if (!radeon_card_posted(rdev)) + return false; + + rdev->bios = NULL; + vram_base = pci_resource_start(rdev->pdev, 0); + bios = ioremap(vram_base, size); + if (!bios) { + return false; + } + + if (size == 0 || bios[0] != 0x55 || bios[1] != 0xaa) { + iounmap(bios); + return false; + } + rdev->bios = kmalloc(size, GFP_KERNEL); + if (rdev->bios == NULL) { + iounmap(bios); + return false; + } + memcpy_fromio(rdev->bios, bios, size); + iounmap(bios); + return true; +} + +static bool radeon_read_bios(struct radeon_device *rdev) +{ + uint8_t __iomem *bios, val1, val2; + size_t size; + + rdev->bios = NULL; + /* XXX: some cards may return 0 for rom size? ddx has a workaround */ + bios = pci_map_rom(rdev->pdev, &size); + if (!bios) { + return false; + } + + val1 = readb(&bios[0]); + val2 = readb(&bios[1]); + + if (size == 0 || val1 != 0x55 || val2 != 0xaa) { + pci_unmap_rom(rdev->pdev, bios); + return false; + } + rdev->bios = kzalloc(size, GFP_KERNEL); + if (rdev->bios == NULL) { + pci_unmap_rom(rdev->pdev, bios); + return false; + } + memcpy_fromio(rdev->bios, bios, size); + pci_unmap_rom(rdev->pdev, bios); + return true; +} + +static bool radeon_read_platform_bios(struct radeon_device *rdev) +{ + phys_addr_t rom = rdev->pdev->rom; + size_t romlen = rdev->pdev->romlen; + void __iomem *bios; + + rdev->bios = NULL; + + if (!rom || romlen == 0) + return false; + + rdev->bios = kzalloc(romlen, GFP_KERNEL); + if (!rdev->bios) + return false; + + bios = ioremap(rom, romlen); + if (!bios) + goto free_bios; + + memcpy_fromio(rdev->bios, bios, romlen); + iounmap(bios); + + if (rdev->bios[0] != 0x55 || rdev->bios[1] != 0xaa) + goto free_bios; + + return true; +free_bios: + kfree(rdev->bios); + return false; +} + +#ifdef CONFIG_ACPI +/* ATRM is used to get the BIOS on the discrete cards in + * dual-gpu systems. + */ +/* retrieve the ROM in 4k blocks */ +#define ATRM_BIOS_PAGE 4096 +/** + * radeon_atrm_call - fetch a chunk of the vbios + * + * @atrm_handle: acpi ATRM handle + * @bios: vbios image pointer + * @offset: offset of vbios image data to fetch + * @len: length of vbios image data to fetch + * + * Executes ATRM to fetch a chunk of the discrete + * vbios image on PX systems (all asics). + * Returns the length of the buffer fetched. + */ +static int radeon_atrm_call(acpi_handle atrm_handle, uint8_t *bios, + int offset, int len) +{ + acpi_status status; + union acpi_object atrm_arg_elements[2], *obj; + struct acpi_object_list atrm_arg; + struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL}; + + atrm_arg.count = 2; + atrm_arg.pointer = &atrm_arg_elements[0]; + + atrm_arg_elements[0].type = ACPI_TYPE_INTEGER; + atrm_arg_elements[0].integer.value = offset; + + atrm_arg_elements[1].type = ACPI_TYPE_INTEGER; + atrm_arg_elements[1].integer.value = len; + + status = acpi_evaluate_object(atrm_handle, NULL, &atrm_arg, &buffer); + if (ACPI_FAILURE(status)) { + printk("failed to evaluate ATRM got %s\n", acpi_format_exception(status)); + return -ENODEV; + } + + obj = (union acpi_object *)buffer.pointer; + memcpy(bios+offset, obj->buffer.pointer, obj->buffer.length); + len = obj->buffer.length; + kfree(buffer.pointer); + return len; +} + +static bool radeon_atrm_get_bios(struct radeon_device *rdev) +{ + int ret; + int size = 256 * 1024; + int i; + struct pci_dev *pdev = NULL; + acpi_handle dhandle, atrm_handle; + acpi_status status; + bool found = false; + + /* ATRM is for the discrete card only */ + if (rdev->flags & RADEON_IS_IGP) + return false; + + while ((pdev = pci_get_class(PCI_CLASS_DISPLAY_VGA << 8, pdev)) != NULL) { + dhandle = ACPI_HANDLE(&pdev->dev); + if (!dhandle) + continue; + + status = acpi_get_handle(dhandle, "ATRM", &atrm_handle); + if (ACPI_SUCCESS(status)) { + found = true; + break; + } + } + + if (!found) { + while ((pdev = pci_get_class(PCI_CLASS_DISPLAY_OTHER << 8, pdev)) != NULL) { + dhandle = ACPI_HANDLE(&pdev->dev); + if (!dhandle) + continue; + + status = acpi_get_handle(dhandle, "ATRM", &atrm_handle); + if (ACPI_SUCCESS(status)) { + found = true; + break; + } + } + } + + if (!found) + return false; + pci_dev_put(pdev); + + rdev->bios = kmalloc(size, GFP_KERNEL); + if (!rdev->bios) { + DRM_ERROR("Unable to allocate bios\n"); + return false; + } + + for (i = 0; i < size / ATRM_BIOS_PAGE; i++) { + ret = radeon_atrm_call(atrm_handle, + rdev->bios, + (i * ATRM_BIOS_PAGE), + ATRM_BIOS_PAGE); + if (ret < ATRM_BIOS_PAGE) + break; + } + + if (i == 0 || rdev->bios[0] != 0x55 || rdev->bios[1] != 0xaa) { + kfree(rdev->bios); + return false; + } + return true; +} +#else +static inline bool radeon_atrm_get_bios(struct radeon_device *rdev) +{ + return false; +} +#endif + +static bool ni_read_disabled_bios(struct radeon_device *rdev) +{ + u32 bus_cntl; + u32 d1vga_control; + u32 d2vga_control; + u32 vga_render_control; + u32 rom_cntl; + bool r; + + bus_cntl = RREG32(R600_BUS_CNTL); + d1vga_control = RREG32(AVIVO_D1VGA_CONTROL); + d2vga_control = RREG32(AVIVO_D2VGA_CONTROL); + vga_render_control = RREG32(AVIVO_VGA_RENDER_CONTROL); + rom_cntl = RREG32(R600_ROM_CNTL); + + /* enable the rom */ + WREG32(R600_BUS_CNTL, (bus_cntl & ~R600_BIOS_ROM_DIS)); + if (!ASIC_IS_NODCE(rdev)) { + /* Disable VGA mode */ + WREG32(AVIVO_D1VGA_CONTROL, + (d1vga_control & ~(AVIVO_DVGA_CONTROL_MODE_ENABLE | + AVIVO_DVGA_CONTROL_TIMING_SELECT))); + WREG32(AVIVO_D2VGA_CONTROL, + (d2vga_control & ~(AVIVO_DVGA_CONTROL_MODE_ENABLE | + AVIVO_DVGA_CONTROL_TIMING_SELECT))); + WREG32(AVIVO_VGA_RENDER_CONTROL, + (vga_render_control & ~AVIVO_VGA_VSTATUS_CNTL_MASK)); + } + WREG32(R600_ROM_CNTL, rom_cntl | R600_SCK_OVERWRITE); + + r = radeon_read_bios(rdev); + + /* restore regs */ + WREG32(R600_BUS_CNTL, bus_cntl); + if (!ASIC_IS_NODCE(rdev)) { + WREG32(AVIVO_D1VGA_CONTROL, d1vga_control); + WREG32(AVIVO_D2VGA_CONTROL, d2vga_control); + WREG32(AVIVO_VGA_RENDER_CONTROL, vga_render_control); + } + WREG32(R600_ROM_CNTL, rom_cntl); + return r; +} + +static bool r700_read_disabled_bios(struct radeon_device *rdev) +{ + uint32_t viph_control; + uint32_t bus_cntl; + uint32_t d1vga_control; + uint32_t d2vga_control; + uint32_t vga_render_control; + uint32_t rom_cntl; + uint32_t cg_spll_func_cntl = 0; + uint32_t cg_spll_status; + bool r; + + viph_control = RREG32(RADEON_VIPH_CONTROL); + bus_cntl = RREG32(R600_BUS_CNTL); + d1vga_control = RREG32(AVIVO_D1VGA_CONTROL); + d2vga_control = RREG32(AVIVO_D2VGA_CONTROL); + vga_render_control = RREG32(AVIVO_VGA_RENDER_CONTROL); + rom_cntl = RREG32(R600_ROM_CNTL); + + /* disable VIP */ + WREG32(RADEON_VIPH_CONTROL, (viph_control & ~RADEON_VIPH_EN)); + /* enable the rom */ + WREG32(R600_BUS_CNTL, (bus_cntl & ~R600_BIOS_ROM_DIS)); + /* Disable VGA mode */ + WREG32(AVIVO_D1VGA_CONTROL, + (d1vga_control & ~(AVIVO_DVGA_CONTROL_MODE_ENABLE | + AVIVO_DVGA_CONTROL_TIMING_SELECT))); + WREG32(AVIVO_D2VGA_CONTROL, + (d2vga_control & ~(AVIVO_DVGA_CONTROL_MODE_ENABLE | + AVIVO_DVGA_CONTROL_TIMING_SELECT))); + WREG32(AVIVO_VGA_RENDER_CONTROL, + (vga_render_control & ~AVIVO_VGA_VSTATUS_CNTL_MASK)); + + if (rdev->family == CHIP_RV730) { + cg_spll_func_cntl = RREG32(R600_CG_SPLL_FUNC_CNTL); + + /* enable bypass mode */ + WREG32(R600_CG_SPLL_FUNC_CNTL, (cg_spll_func_cntl | + R600_SPLL_BYPASS_EN)); + + /* wait for SPLL_CHG_STATUS to change to 1 */ + cg_spll_status = 0; + while (!(cg_spll_status & R600_SPLL_CHG_STATUS)) + cg_spll_status = RREG32(R600_CG_SPLL_STATUS); + + WREG32(R600_ROM_CNTL, (rom_cntl & ~R600_SCK_OVERWRITE)); + } else + WREG32(R600_ROM_CNTL, (rom_cntl | R600_SCK_OVERWRITE)); + + r = radeon_read_bios(rdev); + + /* restore regs */ + if (rdev->family == CHIP_RV730) { + WREG32(R600_CG_SPLL_FUNC_CNTL, cg_spll_func_cntl); + + /* wait for SPLL_CHG_STATUS to change to 1 */ + cg_spll_status = 0; + while (!(cg_spll_status & R600_SPLL_CHG_STATUS)) + cg_spll_status = RREG32(R600_CG_SPLL_STATUS); + } + WREG32(RADEON_VIPH_CONTROL, viph_control); + WREG32(R600_BUS_CNTL, bus_cntl); + WREG32(AVIVO_D1VGA_CONTROL, d1vga_control); + WREG32(AVIVO_D2VGA_CONTROL, d2vga_control); + WREG32(AVIVO_VGA_RENDER_CONTROL, vga_render_control); + WREG32(R600_ROM_CNTL, rom_cntl); + return r; +} + +static bool r600_read_disabled_bios(struct radeon_device *rdev) +{ + uint32_t viph_control; + uint32_t bus_cntl; + uint32_t d1vga_control; + uint32_t d2vga_control; + uint32_t vga_render_control; + uint32_t rom_cntl; + uint32_t general_pwrmgt; + uint32_t low_vid_lower_gpio_cntl; + uint32_t medium_vid_lower_gpio_cntl; + uint32_t high_vid_lower_gpio_cntl; + uint32_t ctxsw_vid_lower_gpio_cntl; + uint32_t lower_gpio_enable; + bool r; + + viph_control = RREG32(RADEON_VIPH_CONTROL); + bus_cntl = RREG32(R600_BUS_CNTL); + d1vga_control = RREG32(AVIVO_D1VGA_CONTROL); + d2vga_control = RREG32(AVIVO_D2VGA_CONTROL); + vga_render_control = RREG32(AVIVO_VGA_RENDER_CONTROL); + rom_cntl = RREG32(R600_ROM_CNTL); + general_pwrmgt = RREG32(R600_GENERAL_PWRMGT); + low_vid_lower_gpio_cntl = RREG32(R600_LOW_VID_LOWER_GPIO_CNTL); + medium_vid_lower_gpio_cntl = RREG32(R600_MEDIUM_VID_LOWER_GPIO_CNTL); + high_vid_lower_gpio_cntl = RREG32(R600_HIGH_VID_LOWER_GPIO_CNTL); + ctxsw_vid_lower_gpio_cntl = RREG32(R600_CTXSW_VID_LOWER_GPIO_CNTL); + lower_gpio_enable = RREG32(R600_LOWER_GPIO_ENABLE); + + /* disable VIP */ + WREG32(RADEON_VIPH_CONTROL, (viph_control & ~RADEON_VIPH_EN)); + /* enable the rom */ + WREG32(R600_BUS_CNTL, (bus_cntl & ~R600_BIOS_ROM_DIS)); + /* Disable VGA mode */ + WREG32(AVIVO_D1VGA_CONTROL, + (d1vga_control & ~(AVIVO_DVGA_CONTROL_MODE_ENABLE | + AVIVO_DVGA_CONTROL_TIMING_SELECT))); + WREG32(AVIVO_D2VGA_CONTROL, + (d2vga_control & ~(AVIVO_DVGA_CONTROL_MODE_ENABLE | + AVIVO_DVGA_CONTROL_TIMING_SELECT))); + WREG32(AVIVO_VGA_RENDER_CONTROL, + (vga_render_control & ~AVIVO_VGA_VSTATUS_CNTL_MASK)); + + WREG32(R600_ROM_CNTL, + ((rom_cntl & ~R600_SCK_PRESCALE_CRYSTAL_CLK_MASK) | + (1 << R600_SCK_PRESCALE_CRYSTAL_CLK_SHIFT) | + R600_SCK_OVERWRITE)); + + WREG32(R600_GENERAL_PWRMGT, (general_pwrmgt & ~R600_OPEN_DRAIN_PADS)); + WREG32(R600_LOW_VID_LOWER_GPIO_CNTL, + (low_vid_lower_gpio_cntl & ~0x400)); + WREG32(R600_MEDIUM_VID_LOWER_GPIO_CNTL, + (medium_vid_lower_gpio_cntl & ~0x400)); + WREG32(R600_HIGH_VID_LOWER_GPIO_CNTL, + (high_vid_lower_gpio_cntl & ~0x400)); + WREG32(R600_CTXSW_VID_LOWER_GPIO_CNTL, + (ctxsw_vid_lower_gpio_cntl & ~0x400)); + WREG32(R600_LOWER_GPIO_ENABLE, (lower_gpio_enable | 0x400)); + + r = radeon_read_bios(rdev); + + /* restore regs */ + WREG32(RADEON_VIPH_CONTROL, viph_control); + WREG32(R600_BUS_CNTL, bus_cntl); + WREG32(AVIVO_D1VGA_CONTROL, d1vga_control); + WREG32(AVIVO_D2VGA_CONTROL, d2vga_control); + WREG32(AVIVO_VGA_RENDER_CONTROL, vga_render_control); + WREG32(R600_ROM_CNTL, rom_cntl); + WREG32(R600_GENERAL_PWRMGT, general_pwrmgt); + WREG32(R600_LOW_VID_LOWER_GPIO_CNTL, low_vid_lower_gpio_cntl); + WREG32(R600_MEDIUM_VID_LOWER_GPIO_CNTL, medium_vid_lower_gpio_cntl); + WREG32(R600_HIGH_VID_LOWER_GPIO_CNTL, high_vid_lower_gpio_cntl); + WREG32(R600_CTXSW_VID_LOWER_GPIO_CNTL, ctxsw_vid_lower_gpio_cntl); + WREG32(R600_LOWER_GPIO_ENABLE, lower_gpio_enable); + return r; +} + +static bool avivo_read_disabled_bios(struct radeon_device *rdev) +{ + uint32_t seprom_cntl1; + uint32_t viph_control; + uint32_t bus_cntl; + uint32_t d1vga_control; + uint32_t d2vga_control; + uint32_t vga_render_control; + uint32_t gpiopad_a; + uint32_t gpiopad_en; + uint32_t gpiopad_mask; + bool r; + + seprom_cntl1 = RREG32(RADEON_SEPROM_CNTL1); + viph_control = RREG32(RADEON_VIPH_CONTROL); + bus_cntl = RREG32(RV370_BUS_CNTL); + d1vga_control = RREG32(AVIVO_D1VGA_CONTROL); + d2vga_control = RREG32(AVIVO_D2VGA_CONTROL); + vga_render_control = RREG32(AVIVO_VGA_RENDER_CONTROL); + gpiopad_a = RREG32(RADEON_GPIOPAD_A); + gpiopad_en = RREG32(RADEON_GPIOPAD_EN); + gpiopad_mask = RREG32(RADEON_GPIOPAD_MASK); + + WREG32(RADEON_SEPROM_CNTL1, + ((seprom_cntl1 & ~RADEON_SCK_PRESCALE_MASK) | + (0xc << RADEON_SCK_PRESCALE_SHIFT))); + WREG32(RADEON_GPIOPAD_A, 0); + WREG32(RADEON_GPIOPAD_EN, 0); + WREG32(RADEON_GPIOPAD_MASK, 0); + + /* disable VIP */ + WREG32(RADEON_VIPH_CONTROL, (viph_control & ~RADEON_VIPH_EN)); + + /* enable the rom */ + WREG32(RV370_BUS_CNTL, (bus_cntl & ~RV370_BUS_BIOS_DIS_ROM)); + + /* Disable VGA mode */ + WREG32(AVIVO_D1VGA_CONTROL, + (d1vga_control & ~(AVIVO_DVGA_CONTROL_MODE_ENABLE | + AVIVO_DVGA_CONTROL_TIMING_SELECT))); + WREG32(AVIVO_D2VGA_CONTROL, + (d2vga_control & ~(AVIVO_DVGA_CONTROL_MODE_ENABLE | + AVIVO_DVGA_CONTROL_TIMING_SELECT))); + WREG32(AVIVO_VGA_RENDER_CONTROL, + (vga_render_control & ~AVIVO_VGA_VSTATUS_CNTL_MASK)); + + r = radeon_read_bios(rdev); + + /* restore regs */ + WREG32(RADEON_SEPROM_CNTL1, seprom_cntl1); + WREG32(RADEON_VIPH_CONTROL, viph_control); + WREG32(RV370_BUS_CNTL, bus_cntl); + WREG32(AVIVO_D1VGA_CONTROL, d1vga_control); + WREG32(AVIVO_D2VGA_CONTROL, d2vga_control); + WREG32(AVIVO_VGA_RENDER_CONTROL, vga_render_control); + WREG32(RADEON_GPIOPAD_A, gpiopad_a); + WREG32(RADEON_GPIOPAD_EN, gpiopad_en); + WREG32(RADEON_GPIOPAD_MASK, gpiopad_mask); + return r; +} + +static bool legacy_read_disabled_bios(struct radeon_device *rdev) +{ + uint32_t seprom_cntl1; + uint32_t viph_control; + uint32_t bus_cntl; + uint32_t crtc_gen_cntl; + uint32_t crtc2_gen_cntl; + uint32_t crtc_ext_cntl; + uint32_t fp2_gen_cntl; + bool r; + + seprom_cntl1 = RREG32(RADEON_SEPROM_CNTL1); + viph_control = RREG32(RADEON_VIPH_CONTROL); + if (rdev->flags & RADEON_IS_PCIE) + bus_cntl = RREG32(RV370_BUS_CNTL); + else + bus_cntl = RREG32(RADEON_BUS_CNTL); + crtc_gen_cntl = RREG32(RADEON_CRTC_GEN_CNTL); + crtc2_gen_cntl = 0; + crtc_ext_cntl = RREG32(RADEON_CRTC_EXT_CNTL); + fp2_gen_cntl = 0; + + if (rdev->pdev->device == PCI_DEVICE_ID_ATI_RADEON_QY) { + fp2_gen_cntl = RREG32(RADEON_FP2_GEN_CNTL); + } + + if (!(rdev->flags & RADEON_SINGLE_CRTC)) { + crtc2_gen_cntl = RREG32(RADEON_CRTC2_GEN_CNTL); + } + + WREG32(RADEON_SEPROM_CNTL1, + ((seprom_cntl1 & ~RADEON_SCK_PRESCALE_MASK) | + (0xc << RADEON_SCK_PRESCALE_SHIFT))); + + /* disable VIP */ + WREG32(RADEON_VIPH_CONTROL, (viph_control & ~RADEON_VIPH_EN)); + + /* enable the rom */ + if (rdev->flags & RADEON_IS_PCIE) + WREG32(RV370_BUS_CNTL, (bus_cntl & ~RV370_BUS_BIOS_DIS_ROM)); + else + WREG32(RADEON_BUS_CNTL, (bus_cntl & ~RADEON_BUS_BIOS_DIS_ROM)); + + /* Turn off mem requests and CRTC for both controllers */ + WREG32(RADEON_CRTC_GEN_CNTL, + ((crtc_gen_cntl & ~RADEON_CRTC_EN) | + (RADEON_CRTC_DISP_REQ_EN_B | + RADEON_CRTC_EXT_DISP_EN))); + if (!(rdev->flags & RADEON_SINGLE_CRTC)) { + WREG32(RADEON_CRTC2_GEN_CNTL, + ((crtc2_gen_cntl & ~RADEON_CRTC2_EN) | + RADEON_CRTC2_DISP_REQ_EN_B)); + } + /* Turn off CRTC */ + WREG32(RADEON_CRTC_EXT_CNTL, + ((crtc_ext_cntl & ~RADEON_CRTC_CRT_ON) | + (RADEON_CRTC_SYNC_TRISTAT | + RADEON_CRTC_DISPLAY_DIS))); + + if (rdev->pdev->device == PCI_DEVICE_ID_ATI_RADEON_QY) { + WREG32(RADEON_FP2_GEN_CNTL, (fp2_gen_cntl & ~RADEON_FP2_ON)); + } + + r = radeon_read_bios(rdev); + + /* restore regs */ + WREG32(RADEON_SEPROM_CNTL1, seprom_cntl1); + WREG32(RADEON_VIPH_CONTROL, viph_control); + if (rdev->flags & RADEON_IS_PCIE) + WREG32(RV370_BUS_CNTL, bus_cntl); + else + WREG32(RADEON_BUS_CNTL, bus_cntl); + WREG32(RADEON_CRTC_GEN_CNTL, crtc_gen_cntl); + if (!(rdev->flags & RADEON_SINGLE_CRTC)) { + WREG32(RADEON_CRTC2_GEN_CNTL, crtc2_gen_cntl); + } + WREG32(RADEON_CRTC_EXT_CNTL, crtc_ext_cntl); + if (rdev->pdev->device == PCI_DEVICE_ID_ATI_RADEON_QY) { + WREG32(RADEON_FP2_GEN_CNTL, fp2_gen_cntl); + } + return r; +} + +static bool radeon_read_disabled_bios(struct radeon_device *rdev) +{ + if (rdev->flags & RADEON_IS_IGP) + return igp_read_bios_from_vram(rdev); + else if (rdev->family >= CHIP_BARTS) + return ni_read_disabled_bios(rdev); + else if (rdev->family >= CHIP_RV770) + return r700_read_disabled_bios(rdev); + else if (rdev->family >= CHIP_R600) + return r600_read_disabled_bios(rdev); + else if (rdev->family >= CHIP_RS600) + return avivo_read_disabled_bios(rdev); + else + return legacy_read_disabled_bios(rdev); +} + +#ifdef CONFIG_ACPI +static bool radeon_acpi_vfct_bios(struct radeon_device *rdev) +{ + struct acpi_table_header *hdr; + acpi_size tbl_size; + UEFI_ACPI_VFCT *vfct; + unsigned offset; + bool r = false; + + if (!ACPI_SUCCESS(acpi_get_table("VFCT", 1, &hdr))) + return false; + tbl_size = hdr->length; + if (tbl_size < sizeof(UEFI_ACPI_VFCT)) { + DRM_ERROR("ACPI VFCT table present but broken (too short #1)\n"); + goto out; + } + + vfct = (UEFI_ACPI_VFCT *)hdr; + offset = vfct->VBIOSImageOffset; + + while (offset < tbl_size) { + GOP_VBIOS_CONTENT *vbios = (GOP_VBIOS_CONTENT *)((char *)hdr + offset); + VFCT_IMAGE_HEADER *vhdr = &vbios->VbiosHeader; + + offset += sizeof(VFCT_IMAGE_HEADER); + if (offset > tbl_size) { + DRM_ERROR("ACPI VFCT image header truncated\n"); + goto out; + } + + offset += vhdr->ImageLength; + if (offset > tbl_size) { + DRM_ERROR("ACPI VFCT image truncated\n"); + goto out; + } + + if (vhdr->ImageLength && + vhdr->PCIBus == rdev->pdev->bus->number && + vhdr->PCIDevice == PCI_SLOT(rdev->pdev->devfn) && + vhdr->PCIFunction == PCI_FUNC(rdev->pdev->devfn) && + vhdr->VendorID == rdev->pdev->vendor && + vhdr->DeviceID == rdev->pdev->device) { + rdev->bios = kmemdup(&vbios->VbiosContent, + vhdr->ImageLength, + GFP_KERNEL); + if (rdev->bios) + r = true; + + goto out; + } + } + + DRM_ERROR("ACPI VFCT table present but broken (too short #2)\n"); + +out: + acpi_put_table(hdr); + return r; +} +#else +static inline bool radeon_acpi_vfct_bios(struct radeon_device *rdev) +{ + return false; +} +#endif + +bool radeon_get_bios(struct radeon_device *rdev) +{ + bool r; + uint16_t tmp; + + r = radeon_atrm_get_bios(rdev); + if (!r) + r = radeon_acpi_vfct_bios(rdev); + if (!r) + r = igp_read_bios_from_vram(rdev); + if (!r) + r = radeon_read_bios(rdev); + if (!r) + r = radeon_read_disabled_bios(rdev); + if (!r) + r = radeon_read_platform_bios(rdev); + if (!r || rdev->bios == NULL) { + DRM_ERROR("Unable to locate a BIOS ROM\n"); + rdev->bios = NULL; + return false; + } + if (rdev->bios[0] != 0x55 || rdev->bios[1] != 0xaa) { + printk("BIOS signature incorrect %x %x\n", rdev->bios[0], rdev->bios[1]); + goto free_bios; + } + + tmp = RBIOS16(0x18); + if (RBIOS8(tmp + 0x14) != 0x0) { + DRM_INFO("Not an x86 BIOS ROM, not using.\n"); + goto free_bios; + } + + rdev->bios_header_start = RBIOS16(0x48); + if (!rdev->bios_header_start) { + goto free_bios; + } + tmp = rdev->bios_header_start + 4; + if (!memcmp(rdev->bios + tmp, "ATOM", 4) || + !memcmp(rdev->bios + tmp, "MOTA", 4)) { + rdev->is_atom_bios = true; + } else { + rdev->is_atom_bios = false; + } + + DRM_DEBUG("%sBIOS detected\n", rdev->is_atom_bios ? "ATOM" : "COM"); + return true; +free_bios: + kfree(rdev->bios); + rdev->bios = NULL; + return false; +} -- cgit v1.2.3