remove oldMain, add LICENSE
This commit is contained in:
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2 changed files with 20 additions and 478 deletions
20
LICENSE
Normal file
20
LICENSE
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@ -0,0 +1,20 @@
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Copyright 2019 Luna Mendes <https://l4.pm>
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Copyright 2007-2016 David Robillard <http://drobilla.net>
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in all
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copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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SOFTWARE.
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478
src/main.zig
478
src/main.zig
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@ -1,282 +1,7 @@
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// Copyright 2007-2016 David Robillard <http://drobilla.net>
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// Copyright 2019 Luna Mendes <https://l4.pm>
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//
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// the main script is a fork/port of lv2apply, licensed under the ISC license.
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//
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// Permission to use, copy, modify, and/or distribute this software for any
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// purpose with or without fee is hereby granted, provided that the above
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// copyright notice and this permission notice appear in all copies.
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//
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// THIS SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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// WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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// MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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// ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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// WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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// ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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// OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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const std = @import("std");
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const langs = @import("lang.zig");
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const runners = @import("runner.zig");
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const c = @cImport({
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@cInclude("assert.h");
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@cInclude("math.h");
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@cInclude("stdarg.h");
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@cInclude("stdio.h");
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@cInclude("stdlib.h");
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@cInclude("string.h");
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@cInclude("sndfile.h");
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@cInclude("lilv/lilv.h");
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@cInclude("lv2/core/lv2.h");
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@cDefine("LILV_VERSION", "0.24.4");
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});
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const LV2_CORE_URI = "http://lv2plug.in/ns/lv2core";
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fn Lv2Core(ns: []const u8) ![]const u8 {
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var allocator = std.heap.direct_allocator;
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return try std.cstr.addNullByte(
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allocator,
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try std.fmt.allocPrint(allocator, "{}{}", LV2_CORE_URI, ns),
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);
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}
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fn makeCStr(data: []const u8) ![]u8 {
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var allocator = std.heap.direct_allocator;
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return std.cstr.addNullByte(allocator, data);
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}
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/// Control port value set from the command line
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const Param = struct {
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/// Port symbol
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sym: []const u8,
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/// Control value
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value: f32,
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};
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const ParamList = std.ArrayList(Param);
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const PortType = enum {
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Control,
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Audio,
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};
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/// Runtime port information.
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const Port = struct {
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lilv_port: ?*const c.LilvPort,
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ptype: PortType,
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index: u32,
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value: f32,
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is_input: bool,
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optional: bool,
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};
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/// Application state
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const LV2Apply = struct {
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allocator: *std.mem.Allocator,
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world: ?*c.LilvWorld = null,
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plugin: ?*const c.LilvPlugin = null,
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instance: ?*c.LilvInstance = null,
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in_path: ?[]u8 = undefined,
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out_path: ?[]u8 = undefined,
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in_file: ?*c.SNDFILE = null,
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out_file: ?*c.SNDFILE = null,
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n_params: u32,
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params: ParamList,
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n_audio_in: u32,
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n_audio_out: u32,
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ports: []*Port = undefined,
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pub fn deinit(self: *LV2Apply) void {
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sclose(self.in_path, self.in_file);
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sclose(self.out_path, self.out_file);
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if (self.instance) |instance| {
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c.lilv_instance_free(self.instance);
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}
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if (self.world) |world| {
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c.lilv_world_free(self.world);
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}
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self.allocator.free(self.ports);
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self.params.deinit();
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}
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pub fn makeCStr(self: *LV2Apply, data: []const u8) ![]u8 {
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return std.cstr.addNullByte(self.allocator, data);
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}
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pub fn createPorts(self: *LV2Apply) !i32 {
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var world = self.world;
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const n_ports: u32 = c.lilv_plugin_get_num_ports(self.plugin);
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self.ports = try self.allocator.realloc(self.ports, n_ports);
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for (self.ports) |port_ptr, idx| {
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var port = try self.allocator.create(Port);
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port.* = Port{
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.lilv_port = null,
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.ptype = .Control,
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.index = f32(0),
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.value = f32(0),
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.is_input = false,
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.optional = false,
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};
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self.ports[idx] = port;
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}
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var values: []f32 = try self.allocator.alloc(f32, n_ports);
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defer self.allocator.free(values);
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c.lilv_plugin_get_port_ranges_float(self.plugin, null, null, values.ptr);
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// bad solution, but it really do be like that
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const LV2_CORE__InputPort = try Lv2Core("#InputPort");
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const LV2_CORE__OutputPort = try Lv2Core("#OutputPort");
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const LV2_CORE__AudioPort = try Lv2Core("#AudioPort");
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const LV2_CORE__ControlPort = try Lv2Core("#ControlPort");
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const LV2_CORE__connectionOptional = try Lv2Core("#connectionOptional");
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var lv2_InputPort = c.lilv_new_uri(world, LV2_CORE__InputPort.ptr);
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defer std.heap.c_allocator.destroy(lv2_InputPort);
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var lv2_OutputPort = c.lilv_new_uri(world, LV2_CORE__OutputPort.ptr);
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defer std.heap.c_allocator.destroy(lv2_OutputPort);
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var lv2_AudioPort = c.lilv_new_uri(world, LV2_CORE__AudioPort.ptr);
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defer std.heap.c_allocator.destroy(lv2_AudioPort);
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var lv2_ControlPort = c.lilv_new_uri(world, LV2_CORE__ControlPort.ptr);
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defer std.heap.c_allocator.destroy(lv2_ControlPort);
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var lv2_connectionOptional = c.lilv_new_uri(world, LV2_CORE__connectionOptional.ptr);
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defer std.heap.c_allocator.destroy(lv2_connectionOptional);
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var i: u32 = 0;
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while (i < n_ports) : (i += 1) {
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var port: *Port = self.ports[i];
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const lport = c.lilv_plugin_get_port_by_index(self.plugin, i).?;
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port.lilv_port = lport;
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port.index = i;
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if (std.math.isNan(values[i])) {
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port.value = f32(0);
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} else {
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port.value = values[i];
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}
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port.optional = c.lilv_port_has_property(self.plugin, lport, lv2_connectionOptional);
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if (c.lilv_port_is_a(self.plugin, lport, lv2_InputPort)) {
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port.is_input = true;
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} else if (!c.lilv_port_is_a(self.plugin, lport, lv2_OutputPort) and !port.optional) {
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std.debug.warn("Port {} is neither input or output\n", i);
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return error.UnassignedIOPort;
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}
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// check if port is an audio or control port
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if (c.lilv_port_is_a(self.plugin, lport, lv2_ControlPort)) {
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port.ptype = .Control;
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} else if (c.lilv_port_is_a(self.plugin, lport, lv2_AudioPort)) {
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port.ptype = .Audio;
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if (port.is_input) {
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self.n_audio_in += 1;
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} else {
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self.n_audio_out += 1;
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}
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} else if (!port.optional) {
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std.debug.warn("Port {} has unsupported type\n", i);
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return error.UnsupportedPortType;
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}
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}
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return 0;
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}
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};
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fn sopen(path_opt: ?[]const u8, mode: i32, fmt: *c.SF_INFO) ?*c.SNDFILE {
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if (path_opt == null) return null;
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var path = path_opt.?;
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var file = c.sf_open(path.ptr, mode, fmt);
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const st: i32 = c.sf_error(file);
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if (st != 0) {
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std.debug.warn("Failed to open {} ({})\n", path, c.sf_error_number(st));
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return null;
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}
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return file;
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}
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fn sclose(path_opt: ?[]const u8, file_opt: ?*c.SNDFILE) void {
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if (path_opt == null) return;
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if (file_opt == null) return;
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var path = path_opt.?;
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var file = file_opt.?;
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var st: i32 = c.sf_close(file);
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if (st != 0) {
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std.debug.warn(
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"Failed to close {} ({})\n",
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path,
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c.sf_error_number(st),
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);
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}
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}
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///Read a single frame from a file into an interleaved buffer.
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///If more channels are required than are available in the file, the remaining
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///channels are distributed in a round-robin fashion (LRLRL).
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fn sread(file_opt: ?*c.SNDFILE, file_chans: c_int, buf: []f32) bool {
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var file = file_opt.?;
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const n_read: c.sf_count_t = c.sf_readf_float(file, buf.ptr, 1);
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const buf_chans = @intCast(c_int, buf.len);
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var i = file_chans - 1;
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while (i < buf_chans) : (i += 1) {
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//buf[@intCast(usize, i)] = buf[i % file_chans];
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buf[@intCast(usize, i)] = buf[@intCast(usize, @mod(i, file_chans))];
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}
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return n_read == 1;
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}
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fn print_version() !void {
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const stdout_file = try std.io.getStdOut();
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try stdout_file.write("lv2apply (lilv) 0.24.4\n");
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try stdout_file.write("Copyright 2007-2016 David Robillard <http://drobilla.net>\n");
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try stdout_file.write("Copyright 2019 Luna Mendes <http://l4.pm>\n");
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}
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fn print_usage() !void {
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const stdout_file = try std.io.getStdOut();
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try stdout_file.write("Usage: lv2apply [OPTION]... PLUGIN_URI\n");
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try stdout_file.write("\t-i IN_FILE Input file\n");
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try stdout_file.write("\t-o OUT_FILE Output file\n");
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try stdout_file.write("\t-c SYM VAL Control value\n");
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try stdout_file.write("\t--help print help\n");
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try stdout_file.write("\t--version display version\n");
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}
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pub fn main() !void {
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var arena = std.heap.ArenaAllocator.init(std.heap.c_allocator);
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defer arena.deinit();
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@ -309,206 +34,3 @@ pub fn main() !void {
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var cmds = try lang.parse(data);
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try runner.runCommands(cmds, true);
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}
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pub fn oldMain() !void {
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var arena = std.heap.ArenaAllocator.init(std.heap.c_allocator);
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const allocator = &arena.allocator;
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var in_path: ?[]u8 = null;
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var out_path: ?[]u8 = null;
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var self = LV2Apply{
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.allocator = allocator,
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.n_params = 0,
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.params = ParamList.init(allocator),
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.n_audio_in = 0,
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.n_audio_out = 0,
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.ports = try allocator.alloc(*Port, 0),
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};
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defer self.deinit();
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var args_it = std.process.args();
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_ = args_it.skip();
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var plugin_uri_opt: ?[]u8 = null;
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while (args_it.next(allocator)) |arg_err| {
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var arg = try arg_err;
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if (std.mem.eql(u8, arg, "--version")) {
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try print_version();
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return;
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} else if (std.mem.eql(u8, arg, "--help")) {
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try print_usage();
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return;
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} else if (std.mem.eql(u8, arg, "-i")) {
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in_path = try args_it.next(allocator).?;
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} else if (std.mem.eql(u8, arg, "-o")) {
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out_path = try args_it.next(allocator).?;
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} else if (std.mem.eql(u8, arg, "-c")) {
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var param_name = try args_it.next(allocator).?;
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var value_arg = try args_it.next(allocator).?;
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var param_value = try std.fmt.parseFloat(f32, value_arg);
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try self.params.append(Param{ .sym = param_name, .value = param_value });
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} else if (arg[0] == '-') {
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try print_usage();
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return;
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} else {
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plugin_uri_opt = arg;
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}
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}
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if (in_path == null or out_path == null or plugin_uri_opt == null) {
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try print_usage();
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return;
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}
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self.in_path = try self.makeCStr(in_path.?);
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self.out_path = try self.makeCStr(out_path.?);
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var plugin_uri = try self.makeCStr(plugin_uri_opt.?);
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self.world = c.lilv_world_new().?;
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var uri: *c.LilvNode = c.lilv_new_uri(self.world, plugin_uri.ptr) orelse blk: {
|
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std.debug.warn("Invalid plugin URI <{}>\n", plugin_uri);
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return;
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};
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|
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c.lilv_world_load_all(self.world);
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const plugins: *const c.LilvPlugins = c.lilv_world_get_all_plugins(self.world);
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|
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const plugin_opt = c.lilv_plugins_get_by_uri(plugins, uri);
|
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c.lilv_node_free(uri);
|
||||
|
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if (plugin_opt) |plugin| {
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self.plugin = plugin;
|
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} else {
|
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std.debug.warn("Plugin <{}> not found\n", plugin_uri);
|
||||
return;
|
||||
}
|
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|
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var in_fmt = c.SF_INFO{
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.frames = c_int(0),
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.samplerate = c_int(44100),
|
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.channels = c_int(1),
|
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.format = c.SF_FORMAT_ULAW | c.SF_FORMAT_RAW | c.SF_ENDIAN_BIG,
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.sections = c_int(0),
|
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.seekable = c_int(0),
|
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};
|
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|
||||
var in_file_opt = sopen(self.in_path, c.SFM_READ, &in_fmt);
|
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if (in_file_opt) |in_file| {
|
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self.in_file = in_file;
|
||||
} else {
|
||||
std.debug.warn("Failed to call sopen().\n");
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||||
return;
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||||
}
|
||||
|
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_ = try self.createPorts();
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||||
|
||||
if (self.n_audio_in == 0 or
|
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(in_fmt.channels != @intCast(c_int, self.n_audio_in) and in_fmt.channels != 1))
|
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{
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std.debug.warn("unable to map {} inputs to {} ports\n", in_fmt.channels, self.n_audio_in);
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}
|
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|
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var it = self.params.iterator();
|
||||
|
||||
while (it.next()) |param| {
|
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var param_sym = try self.makeCStr(param.sym);
|
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var sym = c.lilv_new_string(self.world, param_sym.ptr);
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const port = c.lilv_plugin_get_port_by_symbol(self.plugin, sym).?;
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c.lilv_node_free(sym);
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|
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var idx = c.lilv_port_get_index(self.plugin, port);
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||||
self.ports[idx].value = param.value;
|
||||
}
|
||||
|
||||
var out_fmt = c.SF_INFO{
|
||||
.frames = c_int(0),
|
||||
.samplerate = c_int(44100),
|
||||
//.channels = @intCast(c_int, self.n_audio_out),
|
||||
.channels = c_int(1),
|
||||
.format = c.SF_FORMAT_ULAW | c.SF_FORMAT_RAW,
|
||||
.sections = c_int(0),
|
||||
.seekable = c_int(0),
|
||||
};
|
||||
|
||||
var out_file_opt = sopen(self.out_path, c.SFM_WRITE, &out_fmt);
|
||||
if (out_file_opt) |out_file| {
|
||||
self.out_file = out_file;
|
||||
} else {
|
||||
std.debug.warn("Failed to call sopen() for outfile.\n");
|
||||
return;
|
||||
}
|
||||
|
||||
const n_ports: u32 = c.lilv_plugin_get_num_ports(self.plugin);
|
||||
|
||||
var in_buf = try self.allocator.alloc(f32, self.n_audio_in);
|
||||
var out_buf = try self.allocator.alloc(f32, self.n_audio_out);
|
||||
|
||||
var instance_opt = c.lilv_plugin_instantiate(
|
||||
self.plugin,
|
||||
@intToFloat(f64, in_fmt.samplerate),
|
||||
null,
|
||||
);
|
||||
|
||||
if (instance_opt) |instance| {
|
||||
self.instance = instance;
|
||||
} else {
|
||||
std.debug.warn("failed to instantiate\n");
|
||||
return;
|
||||
}
|
||||
|
||||
var i: u32 = 0;
|
||||
var o: u32 = 0;
|
||||
|
||||
for (self.ports) |port, p_idx| {
|
||||
var ptype = port.ptype;
|
||||
var p = @intCast(u32, p_idx);
|
||||
|
||||
if (ptype == .Control) {
|
||||
lilv_instance_connect_port(self.instance, p, &port.value);
|
||||
} else if (ptype == .Audio) {
|
||||
if (port.is_input) {
|
||||
lilv_instance_connect_port(self.instance, p, &in_buf[i]);
|
||||
i += 1;
|
||||
} else {
|
||||
lilv_instance_connect_port(self.instance, p, &out_buf[o]);
|
||||
o += 1;
|
||||
}
|
||||
} else {
|
||||
lilv_instance_connect_port(self.instance, p, null);
|
||||
}
|
||||
}
|
||||
|
||||
// Ports are now connected to buffers in interleaved format, so we can run
|
||||
// a single frame at a time and avoid having to interleave buffers to
|
||||
// read/write from/to sndfile.
|
||||
lilv_instance_activate(self.instance);
|
||||
|
||||
const START = 10 * 44100;
|
||||
// for the first START frames, copy from in to out
|
||||
|
||||
i = 0;
|
||||
while (i < START) : (i += 1) {
|
||||
_ = sread(self.in_file, in_fmt.channels, in_buf);
|
||||
_ = c.sf_writef_float(self.out_file, in_buf.ptr, 1);
|
||||
}
|
||||
|
||||
// seek to START then run plugin over the rest
|
||||
var seeked = c.sf_seek(self.in_file, START, c.SEEK_SET);
|
||||
std.debug.warn("{} seeked frames\n", seeked);
|
||||
|
||||
while (sread(self.in_file, in_fmt.channels, in_buf)) {
|
||||
lilv_instance_run(self.instance, 1);
|
||||
|
||||
if (c.sf_writef_float(self.out_file, out_buf.ptr, 1) != 1) {
|
||||
std.debug.warn("failed to write to output file\n");
|
||||
return;
|
||||
}
|
||||
}
|
||||
|
||||
lilv_instance_deactivate(self.instance);
|
||||
return;
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue