/*
* Copyright (c) 2017, NVIDIA CORPORATION. All rights reserved.
*
* 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 AUTHORS OR COPYRIGHT HOLDERS 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.
*/
/*
* Function naming determines intended use:
*
* <x>_r(void) : Returns the offset for register <x>.
*
* <x>_o(void) : Returns the offset for element <x>.
*
* <x>_w(void) : Returns the word offset for word (4 byte) element <x>.
*
* <x>_<y>_s(void) : Returns size of field <y> of register <x> in bits.
*
* <x>_<y>_f(u32 v) : Returns a value based on 'v' which has been shifted
* and masked to place it at field <y> of register <x>. This value
* can be |'d with others to produce a full register value for
* register <x>.
*
* <x>_<y>_m(void) : Returns a mask for field <y> of register <x>. This
* value can be ~'d and then &'d to clear the value of field <y> for
* register <x>.
*
* <x>_<y>_<z>_f(void) : Returns the constant value <z> after being shifted
* to place it at field <y> of register <x>. This value can be |'d
* with others to produce a full register value for <x>.
*
* <x>_<y>_v(u32 r) : Returns the value of field <y> from a full register
* <x> value 'r' after being shifted to place its LSB at bit 0.
* This value is suitable for direct comparison with other unshifted
* values appropriate for use in field <y> of register <x>.
*
* <x>_<y>_<z>_v(void) : Returns the constant value for <z> defined for
* field <y> of register <x>. This value is suitable for direct
* comparison with unshifted values appropriate for use in field <y>
* of register <x>.
*/
#ifndef _hw_bus_gv100_h_
#define _hw_bus_gv100_h_
static inline u32 bus_sw_scratch_r(u32 i)
{
return 0x00001580U + i*4U;
}
static inline u32 bus_bar0_window_r(void)
{
return 0x00001700U;
}
static inline u32 bus_bar0_window_base_f(u32 v)
{
return (v & 0xffffffU) << 0U;
}
static inline u32 bus_bar0_window_target_vid_mem_f(void)
{
return 0x0U;
}
static inline u32 bus_bar0_window_target_sys_mem_coherent_f(void)
{
return 0x2000000U;
}
static inline u32 bus_bar0_window_target_sys_mem_noncoherent_f(void)
{
return 0x3000000U;
}
static inline u32 bus_bar0_window_target_bar0_window_base_shift_v(void)
{
return 0x00000010U;
}
static inline u32 bus_bar1_block_r(void)
{
return 0x00001704U;
}
static inline u32 bus_bar1_block_ptr_f(u32 v)
{
return (v & 0xfffffffU) << 0U;
}
static inline u32 bus_bar1_block_target_vid_mem_f(void)
{
return 0x0U;
}
static inline u32 bus_bar1_block_target_sys_mem_coh_f(void)
{
return 0x20000000U;
}
static inline u32 bus_bar1_block_target_sys_mem_ncoh_f(void)
{
return 0x30000000U;
}
static inline u32 bus_bar1_block_mode_virtual_f(void)
{
return 0x80000000U;
}
static inline u32 bus_bar2_block_r(void)
{
return 0x00001714U;
}
static inline u32 bus_bar2_block_ptr_f(u32 v)
{
return (v & 0xfffffffU) << 0U;
}
static inline u32 bus_bar2_block_target_vid_mem_f(void)
{
return 0x0U;
}
static inline u32 bus_bar2_block_target_sys_mem_coh_f(void)
{
return 0x20000000U;
}
static inline u32 bus_bar2_block_target_sys_mem_ncoh_f(void)
{
return 0x30000000U;
}
static inline u32 bus_bar2_block_mode_virtual_f(void)
{
return 0x80000000U;
}
static inline u32 bus_bar1_block_ptr_shift_v(void)
{
return 0x0000000cU;
}
static inline u32 bus_bar2_block_ptr_shift_v(void)
{
return 0x0000000cU;
}
static inline u32 bus_bind_status_r(void)
{
return 0x00001710U;
}
static inline u32 bus_bind_status_bar1_pending_v(u32 r)
{
return (r >> 0U) & 0x1U;
}
static inline u32 bus_bind_status_bar1_pending_empty_f(void)
{
return 0x0U;
}
static inline u32 bus_bind_status_bar1_pending_busy_f(void)
{
return 0x1U;
}
static inline u32 bus_bind_status_bar1_outstanding_v(u32 r)
{
return (r >> 1U) & 0x1U;
}
static inline u32 bus_bind_status_bar1_outstanding_false_f(void)
{
return 0x0U;
}
static inline u32 bus_bind_status_bar1_outstanding_true_f(void)
{
return 0x2U;
}
static inline u32 bus_bind_status_bar2_pending_v(u32 r)
{
return (r >> 2U) & 0x1U;
}
static inline u32 bus_bind_status_bar2_pending_empty_f(void)
{
return 0x0U;
}
static inline u32 bus_bind_status_bar2_pending_busy_f(void)
{
return 0x4U;
}
static inline u32 bus_bind_status_bar2_outstanding_v(u32 r)
{
return (r >> 3U) & 0x1U;
}
static inline u32 bus_bind_status_bar2_outstanding_false_f(void)
{
return 0x0U;
}
static inline u32 bus_bind_status_bar2_outstanding_true_f(void)
{
return 0x8U;
}
static inline u32 bus_intr_0_r(void)
{
return 0x00001100U;
}
static inline u32 bus_intr_0_pri_squash_m(void)
{
return 0x1U << 1U;
}
static inline u32 bus_intr_0_pri_fecserr_m(void)
{
return 0x1U << 2U;
}
static inline u32 bus_intr_0_pri_timeout_m(void)
{
return 0x1U << 3U;
}
static inline u32 bus_intr_en_0_r(void)
{
return 0x00001140U;
}
static inline u32 bus_intr_en_0_pri_squash_m(void)
{
return 0x1U << 1U;
}
static inline u32 bus_intr_en_0_pri_fecserr_m(void)
{
return 0x1U << 2U;
}
static inline u32 bus_intr_en_0_pri_timeout_m(void)
{
return 0x1U << 3U;
}
#endif