diff options
author | Jason Gunthorpe <jgg@mellanox.com> | 2019-01-29 13:49:31 -0700 |
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committer | Jason Gunthorpe <jgg@mellanox.com> | 2019-01-29 13:49:31 -0700 |
commit | 55c293c38efa4408920e3ff8135a85a0dc2e3f56 (patch) | |
tree | 7933e8bd5f163545eaa497c5b659052a6edf30e1 /arch/riscv/kernel/module-sections.c | |
parent | b360ce3b2be9fb93d7ba7ecdcb4eb16d7e469998 (diff) | |
parent | eaebaf77e7cb22fc371b7843370c903f1dd0fc3d (diff) |
Merge branch 'devx-async' into k.o/for-next
Yishai Hadas says:
Enable DEVX asynchronous query commands
This series enables querying a DEVX object in an asynchronous mode.
The userspace application won't block when calling the firmware and it will be
able to get the response back once that it will be ready.
To enable the above functionality:
- DEVX asynchronous command completion FD object was introduced.
- The applicable file operations were implemented to enable using it by
the user application.
- Query asynchronous method was added to the DEVX object, it will call the
firmware asynchronously and manages the response on the given input FD.
- Hot unplug support was added for the FD to work properly upon
unbind/disassociate.
- mlx5 core fence for asynchronous commands was implemented and used to
prevent racing upon unbind/disassociate.
This branch is based on mlx5-next & v5.0-rc2 due to dependencies, from
git://git.kernel.org/pub/scm/linux/kernel/git/mellanox/linux
* branch 'devx-async':
IB/mlx5: Implement DEVX hot unplug for async command FD
IB/mlx5: Implement the file ops of DEVX async command FD
IB/mlx5: Introduce async DEVX obj query API
IB/mlx5: Introduce MLX5_IB_OBJECT_DEVX_ASYNC_CMD_FD
Signed-off-by: Jason Gunthorpe <jgg@mellanox.com>
Diffstat (limited to 'arch/riscv/kernel/module-sections.c')
-rw-r--r-- | arch/riscv/kernel/module-sections.c | 30 |
1 files changed, 16 insertions, 14 deletions
diff --git a/arch/riscv/kernel/module-sections.c b/arch/riscv/kernel/module-sections.c index bbbd26e19bfd..c9ae48333114 100644 --- a/arch/riscv/kernel/module-sections.c +++ b/arch/riscv/kernel/module-sections.c @@ -9,14 +9,14 @@ #include <linux/kernel.h> #include <linux/module.h> -u64 module_emit_got_entry(struct module *mod, u64 val) +unsigned long module_emit_got_entry(struct module *mod, unsigned long val) { struct mod_section *got_sec = &mod->arch.got; int i = got_sec->num_entries; struct got_entry *got = get_got_entry(val, got_sec); if (got) - return (u64)got; + return (unsigned long)got; /* There is no duplicate entry, create a new one */ got = (struct got_entry *)got_sec->shdr->sh_addr; @@ -25,10 +25,10 @@ u64 module_emit_got_entry(struct module *mod, u64 val) got_sec->num_entries++; BUG_ON(got_sec->num_entries > got_sec->max_entries); - return (u64)&got[i]; + return (unsigned long)&got[i]; } -u64 module_emit_plt_entry(struct module *mod, u64 val) +unsigned long module_emit_plt_entry(struct module *mod, unsigned long val) { struct mod_section *got_plt_sec = &mod->arch.got_plt; struct got_entry *got_plt; @@ -37,27 +37,29 @@ u64 module_emit_plt_entry(struct module *mod, u64 val) int i = plt_sec->num_entries; if (plt) - return (u64)plt; + return (unsigned long)plt; /* There is no duplicate entry, create a new one */ got_plt = (struct got_entry *)got_plt_sec->shdr->sh_addr; got_plt[i] = emit_got_entry(val); plt = (struct plt_entry *)plt_sec->shdr->sh_addr; - plt[i] = emit_plt_entry(val, (u64)&plt[i], (u64)&got_plt[i]); + plt[i] = emit_plt_entry(val, + (unsigned long)&plt[i], + (unsigned long)&got_plt[i]); plt_sec->num_entries++; got_plt_sec->num_entries++; BUG_ON(plt_sec->num_entries > plt_sec->max_entries); - return (u64)&plt[i]; + return (unsigned long)&plt[i]; } -static int is_rela_equal(const Elf64_Rela *x, const Elf64_Rela *y) +static int is_rela_equal(const Elf_Rela *x, const Elf_Rela *y) { return x->r_info == y->r_info && x->r_addend == y->r_addend; } -static bool duplicate_rela(const Elf64_Rela *rela, int idx) +static bool duplicate_rela(const Elf_Rela *rela, int idx) { int i; for (i = 0; i < idx; i++) { @@ -67,13 +69,13 @@ static bool duplicate_rela(const Elf64_Rela *rela, int idx) return false; } -static void count_max_entries(Elf64_Rela *relas, int num, +static void count_max_entries(Elf_Rela *relas, int num, unsigned int *plts, unsigned int *gots) { unsigned int type, i; for (i = 0; i < num; i++) { - type = ELF64_R_TYPE(relas[i].r_info); + type = ELF_RISCV_R_TYPE(relas[i].r_info); if (type == R_RISCV_CALL_PLT) { if (!duplicate_rela(relas, i)) (*plts)++; @@ -118,9 +120,9 @@ int module_frob_arch_sections(Elf_Ehdr *ehdr, Elf_Shdr *sechdrs, /* Calculate the maxinum number of entries */ for (i = 0; i < ehdr->e_shnum; i++) { - Elf64_Rela *relas = (void *)ehdr + sechdrs[i].sh_offset; - int num_rela = sechdrs[i].sh_size / sizeof(Elf64_Rela); - Elf64_Shdr *dst_sec = sechdrs + sechdrs[i].sh_info; + Elf_Rela *relas = (void *)ehdr + sechdrs[i].sh_offset; + int num_rela = sechdrs[i].sh_size / sizeof(Elf_Rela); + Elf_Shdr *dst_sec = sechdrs + sechdrs[i].sh_info; if (sechdrs[i].sh_type != SHT_RELA) continue; |